Combinatorial Modification of Degradable Polymers Enables Transfection of Human Cells Comparable to AdenovirusFNR HREF="fn1">FN ID="fn1">J.J.G. and G.T.Z. contributed equally to this research. We thank Weidan Peng for reviewing the manuscript. J.J.G. wishes to thank the NSF for fellowship support. This work was supported by NIH grant EB 00244 (R.L.) and the Department of Defence (J.A.S.). (English)
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- New search for: Green, J. J
- New search for: Zugates, G. T
- New search for: Tedford, N. C
- New search for: Huang, Y.-H.
- New search for: Griffith, L. G
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In:
Advanced materials
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19
, 19
; 2836-2842
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2007
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ISSN:
- Article (Journal) / Print
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Title:Combinatorial Modification of Degradable Polymers Enables Transfection of Human Cells Comparable to AdenovirusFNR HREF="fn1">FN ID="fn1">J.J.G. and G.T.Z. contributed equally to this research. We thank Weidan Peng for reviewing the manuscript. J.J.G. wishes to thank the NSF for fellowship support. This work was supported by NIH grant EB 00244 (R.L.) and the Department of Defence (J.A.S.).
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Contributors:Green, J. J ( author ) / Zugates, G. T / Tedford, N. C / Huang, Y.-H. / Griffith, L. G / Lauffenburger, D. A / Sawicki, J. A / Langer, R. / Anderson, D. G
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Published in:Advanced materials ; 19, 19 ; 2836-2842
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- New search for: Wiley-VCH Verl.
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Place of publication:Weinheim
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Publication date:2007
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Type of media:Article (Journal)
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Type of material:Print
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Language:English
- New search for: 51.45
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BKL: 51.45 Werkstoffe mit besonderen Eigenschaften -
Source:
Table of contents – Volume 19, Issue 19
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
- 2719
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Contents: Adv. Mater. 19/2007| 2007
- 2737
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Nonlinear Optical Properties of PorphyrinsFNR HREF="fn1">FN ID="fn1">Our own research and writing of this article was made possible by generous funding from Science Foundation Ireland (SFI Research Professorship 04-RPI-B482 and RFP grant 06-RFP-CHO044).Senge, M. O et al. | 2007
- 2737
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Nonlinear Optical Properties of PorphyrinsSenge, M. O. / Fazekas, M. / Notaras, E. G. A. / Blau, W. J. / Zawadzka, M. / Locos, O. B. / Ni Mhuircheartaigh, E. M. et al. | 2007
- 2775
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Myogenic Induction of Aligned Mesenchymal Stem Cell Sheets by Culture on Thermally Responsive Electrospun NanofibersFNR HREF="fn1">FN ID="fn1">Support for this work is provided by NIH (EB003447). We would like to thank Dr. Sing Yian Chew and I-Chien Liao for their assistance with the electrospinning protocol. Supporting Information is available online from Wiley InterScience or from the author.Dang, J. M et al. | 2007
- 2775
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Myogenic Induction of Aligned Mesenchymal Stem Cell Sheets by Culture on Thermally Responsive Electrospun NanofibersDang, J. M. / Leong, K. W. et al. | 2007
- 2780
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Polymerization of an Organogel Formed by a Hetero‐bifunctional Gelator in a Monomeric Solvent: Preparation of Nanofibers Embedded in a Polymer MatrixKang, S. H. / Jung, B. M. / Chang, J. Y. et al. | 2007
- 2780
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Polymerization of an Organogel Formed by a Hetero-bifunctional Gelator in a Monomeric Solvent: Preparation of Nanofibers Embedded in a Polymer MatrixFNR HREF="fn1">FN ID="fn1">Financial support from the Korea Science and Engineering Foundation (R11-2005-000-10343-0) and the HOMRC is gratefully acknowledged.Kang, S. H et al. | 2007
- 2785
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Dynamics of Threshold Voltage Shifts in Organic and Amorphous Silicon Field-Effect TransistorsFNR HREF="fn1">FN ID="fn1">Dr. T. Anthopoulos, Imperial College, London, Dr. J. Veres, Kodak, Rochester, USA, and Prof. P. Blom, University of Groningen, are gratefully acknowledged for stimulating discussions. We also gratefully acknowledge the financial support received from the EC (project PolyApply IST-IP-507143). The work of E.C.P.S. forms part of the Dutch Polymer Institute (DPI) research program (project no. 516).Mathijssen, S. G J et al. | 2007
- 2785
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Dynamics of Threshold Voltage Shifts in Organic and Amorphous Silicon Field‐Effect TransistorsMathijssen, S. G. J. / Cölle, M. / Gomes, H. / Smits, E. C. P. / de Boer, B. / McCulloch, I. / Bobbert, P. A. / de Leeuw, D. M. et al. | 2007
- 2790
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Bioavailability of Nickel in Single-Wall Carbon NanotubesFNR HREF="fn1">FN ID="fn1">Financial support was provided by the NIEHS Superfund Basic Research Program P42 ES013660, EPA STAR Grant RD-83171901-0, and NSF Nanoscale Interdisciplinary Research Team (NIRT) grant DMI-0506661. The technical contributions of Joseph Orchardo, Anthony McCormick, Lin Guo, Bonnie Lau, Prof. Shouheng Sun and Indrek Külaots at Brown University are gratefully acknowledged. Although this research was funded in part by the EPA and NIEHS, it does not necessarily reflect the views of either agency.Liu, X. et al. | 2007
- 2790
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Bioavailability of Nickel in Single‐Wall Carbon NanotubesLiu, X. / Gurel, V. / Morris, D. / Murray, D. W. / Zhitkovich, A. / Kane, A. B. / Hurt, R. H. et al. | 2007
- 2797
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Well‐Aligned Nanocylinder Formation in Phase‐Separated Metal‐Silicide–Silicon and Metal‐Germanide–Germanium SystemsYasui, N. / Horie, R. / Ohashi, Y. / Tanji, K. / Den, T. et al. | 2007
- 2802
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Morphological Changes and Multicolor Photochromism of Ag Nanoparticles Deposited on Single‐crystalline TiO2 SurfacesMatsubara, K. / Tatsuma, T. et al. | 2007
- 2802
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Morphological Changes and Multicolor Photochromism of Ag Nanoparticles Deposited on Single-crystalline TiO2 SurfacesFNR HREF="fn1">FN ID="fn1">We are grateful to Dr. Y. Ohko and Dr. N. Sakai for valuable discussions. This work was supported in part by Grants-in-Aid for Scientific Research (Nos. 14050028 (Area 417) and 17350064) from MEXT, Japan and JSPS, respectively and JST. K.M. thanks the JSPS Research Fellowship for Young Scientists.Matsubara, K. et al. | 2007
- 2807
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An Electro- and Thermochromic Hydrogel as a Full-Color IndicatorFNR HREF="fn1">FN ID="fn1">Y.T. gratefully acknowledges financial support from the Ministry of Education, Culture, Sports, Science, and Technology, Japan, through a Grant-in-Aid for Scientific Research on Priority Areas (Nos. 417 and 438). NIPA was kindly provided by the KOHJIN Company. Supporting Information is available online from Wiley InterScience or from the author.Ueno, K. et al. | 2007
- 2807
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An electro- and thermochromic hydrogels as a full-color indicatorUeno, Kazuhide / Matsubara, Kazuki / Watanabe, Masayoshi / Takeoka, Yukikazu et al. | 2007
- 2807
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An Electro‐ and Thermochromic Hydrogel as a Full‐Color IndicatorUeno, K. / Matsubara, K. / Watanabe, M. / Takeoka, Y. et al. | 2007
- 2813
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Hydrogenography: An Optical Combinatorial Method To Find New Light‐Weight Hydrogen‐Storage MaterialsGremaud, R. / Broedersz, C. P. / Borsa, D. M. / Borgschulte, A. / Mauron, P. / Schreuders, H. / Rector, J. H. / Dam, B. / Griessen, R. et al. | 2007
- 2813
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Hydrogenography: An Optical Combinatorial Method To Find New Light-Weight Hydrogen-Storage MaterialsFNR HREF="fn1">FN ID="fn1">This work is financially supported by the Stichting voor Fundamenteel Onderzoek der Materie (FOM) and the Nederlandse Organisatie voor Wetenschappelijk Onderzoek (NWO) through the Sustainable Hydrogen Programme of Advanced Chemical Technologies for Sustainability (ACTS). We thank S. May for careful reading of the manuscript.Gremaud, R. et al. | 2007
- 2818
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High‐Performance, Flexible Hydrogen Sensors That Use Carbon Nanotubes Decorated with Palladium NanoparticlesSun, Y. / Wang, H. H. et al. | 2007
- 2818
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High-Performance, Flexible Hydrogen Sensors That Use Carbon Nanotubes Decorated with Palladium NanoparticlesFNR HREF="fn1">FN ID="fn1">The submitted manuscript has been created by UChicago Argonne, LLC, Operator of Argonne National Laboratory ("Argonne"). Argonne, a U.S. Department of Energy Office of Science laboratory, is operated under Contract No. DE-AC02-06CH11357. The U.S. Government retains for itself, and others acting on its behalf, a paid-up nonexclusive, irrevocable worldwide license in said article to reproduce, prepare derivative works, distribute copied to the public, and perform publicly and display publicly, by or on behalf of the Government. This work was carried out by the use of the Center for Nanoscale Materials (ANL-CNM). Y. Sun is grateful to Prof. John A. Rogers (University of Illinois at Urbana-Champaign) for allowing the use of the facilities in his research group. We also thank Qing Cao (University of Illinois at Urbana-Champaign) for the help in device fabrication. Devices were fabricated partially using the Microfabrication and Crystal Growth Facility in Frederick Seitz Materials ReseSun, Y. et al. | 2007
- 2824
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Bright Light Emission of a Single Polythiophene Nanotube Strand with a Nanometer‐scale Metal CoatingJoo, J. / Park, D. H. / Jeong, M.‐Y. / Lee, Y. B. / Kim, H. S. / Choi, W. J. / Park, Q.‐H. / Kim, H.‐J. / Kim, D.‐C. / Kim, J. et al. | 2007
- 2824
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Bright Light Emission of a Single Polythiophene Nanotube Strand with a Nanometer-scale Metal CoatingFNR HREF="fn1">FN ID="fn1">The work was supported in part by the Korea Science and Engineering Foundation (KOSEF). J. Joo was supported in part by the Korea Research Foundation (KRF-J03602). J. Kim acknowledges financial support at the CNMM of the 21st Century Frontier Research Program. Q. Park was supported by the Seoul R&BD Program. The authors thank D. S. Kim, S. S. Kim, M.-S. Choi, R. Kim, Y. D. Suh, and S. Nam for discussions and experimental help. Supporting Information is available online at Wiley InterScience or from the author.Joo, J. et al. | 2007
- 2830
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Synthesis of Core-Crosslinked Nanoparticles with Controlled Cylindrical Shape and Narrowly-Dispersed Size via Core-Shell Brush Block Copolymer TemplatesFNR HREF="fn1">FN ID="fn1">Financial support by Unilever is acknowledged with appreciation. This material is also based upon work supported by the National Science Foundation under Grant Nos. DMR0451490 and ECS0506309.Cheng, C. et al. | 2007
- 2830
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Synthesis of Core‐Crosslinked Nanoparticles with Controlled Cylindrical Shape and Narrowly‐Dispersed Size via Core‐Shell Brush Block Copolymer TemplatesCheng, C. / Qi, K. / Germack, D. S. / Khoshdel, E. / Wooley, K. L. et al. | 2007
- 2836
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Combinatorial Modification of Degradable Polymers Enables Transfection of Human Cells Comparable to AdenovirusGreen, J. J. / Zugates, G. T. / Tedford, N. C. / Huang, Y.‐H. / Griffith, L. G. / Lauffenburger, D. A. / Sawicki, J. A. / Langer, R. / Anderson, D. G. et al. | 2007
- 2836
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Combinatorial Modification of Degradable Polymers Enables Transfection of Human Cells Comparable to AdenovirusFNR HREF="fn1">FN ID="fn1">J.J.G. and G.T.Z. contributed equally to this research. We thank Weidan Peng for reviewing the manuscript. J.J.G. wishes to thank the NSF for fellowship support. This work was supported by NIH grant EB 00244 (R.L.) and the Department of Defence (J.A.S.).Green, J. J et al. | 2007
- 2843
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A Tetrazolate- and Cyano-Bridged Homometallic Mixed-Valence Copper(I,II) Molecular FerrimagnetFNR HREF="fn1">FN ID="fn1">This work was financially supported by NSFC 20401011, FANEDD 200422, NCET-05-0270, Novelty Project of Shanxi Graduates 20061022, and Education Bureau of Shanxi. Special thanks are given to Professor Marc Drillon, S. Gao and M.-L. Tong for their constructive suggestions. Supporting Information is available online from Wiley InterScience or from the author.Zhang, X.-M. et al. | 2007
- 2843
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A Tetrazolate‐ and Cyano‐Bridged Homometallic Mixed‐Valence Copper(I,II) Molecular FerrimagnetZhang, X.‐M. / Zhao, Y.‐F. / Zhang, X.‐W. / Chen, X.‐M. et al. | 2007
- 2847
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Silk Fibroin Microfluidic DevicesBettinger, C. J. / Cyr, K. M. / Matsumoto, A. / Langer, R. / Borenstein, J. T. / Kaplan, D. L. et al. | 2007
- 2847
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Silk Fibroin Microfluidic DevicesFNR HREF="fn1">FN ID="fn1">The authors would like to acknowledge the following: The MEMS Technology Group at the Draper Laboratory for direct funding and use of facilities; James Hsiao and Asish Misra for contributions in microfabrication and cell culture; The Tissue Engineering Resource Center at Tufts University for providing cocoons; Hyeon Joo Kim for technical discussions and assistance in silk purification. C.J.B. was funded through a Draper Fellowship. Additional funding provided through DL-H-550154, and by NIH R01DE-013023-06. Support from the Center for Integration of Medicine and Innovative Technology, US Army DAMD17-02-2-0006, is also gratefully acknowledged. The content of this paper does not necessarily reflect the position or the policy of the government, and no official endorsement should be inferred. Supporting Information is available online from Wiley InterScience or from the authors.Bettinger, C. J et al. | 2007
- 2851
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Shape‐Memory Effects in Polymer Networks Containing Reversibly Associating Side‐GroupsLi, J. / Viveros, J. A. / Wrue, M. H. / Anthamatten, M. et al. | 2007
- 2851
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Shape-Memory Effects in Polymer Networks Containing Reversibly Associating Side-GroupsFNR HREF="fn1">FN ID="fn1">Acknowledgement is made to the donors of The American Chemical Society Petroleum Research Fund for partial support of this research. M.W. acknowledges support from a Horton Fellowship administered through the Laboratory of Laser Energetics at the University of Rochester.Li, J. et al. | 2007
- 2856
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A Facile Synthesis Route to Prepare Microtubes from Phosphate Glass FibresAbou Neel, E. A. / Young, A. M. / Nazhat, S. N. / Knowles, J. C. et al. | 2007
- 2856
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A Facile Synthesis Route to Prepare Microtubes from Phosphate Glass FibresFNR HREF="fn1">FN ID="fn1">The help and support from Dr. I. Ahmed, Nicky Mordan, and the late Mike Kayser are gratefully acknowledged. This project was funded by the Egyptian Government and UK EPSRC.Abou Neel, E. A et al. | 2007
- 2863
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Grafted Conducting Polymer Films for Nano‐patterning onto Various Organic and Inorganic Substrates by Oxidative Chemical Vapor DepositionIm, S. G. / Yoo, P. J. / Hammond, P. T. / Gleason, K. K. et al. | 2007
- 2863
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Grafted Conducting Polymer Films for Nano-patterning onto Various Organic and Inorganic Substrates by Oxidative Chemical Vapor DepositionFNR HREF="fn1">FN ID="fn1">This research was supported by the U.S. Army through the Institute for Soldier Nanotechnologies, under Contract DAAD-19-02D-0002 with the U.S. Army Research Office. The authors thank Dr. Sreeram Vaddiraju for valuable comments. The authors thank Kevin Kyungbum Ryu for photolithography. This work made use of MIT's shared scanning-electron-beam-lithography facility in the Research Laboratory of Electronics.Im, S. G et al. | 2007
- 2868
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Pentacene Nanostructures on Surface‐Hydrophobicity‐Controlled Polymer/SiO2 Bilayer Gate‐DielectricsYang, H. / Kim, S. H. / Yang, L. / Yang, S. Y. / Park, C. E. et al. | 2007
- 2868
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Pentacene Nanostructures on Surface-Hydrophobicity-Controlled Polymer-SiO2 Bilayer Gate-DielectricsFNR HREF="fn1">FN ID="fn1">H.Y. and S.H.K. contributed equally to this work. We acknowledge the support of the United States Department of Energy, Office of Basic Energy Sciences (DE-AC02-98CH10886) for synchrotron X-ray study. Financial support was provided by the Regional Technology Innovation Program of the Ministry of Commerce, Industry and Energy, Korea (RTI04-01-04) and the National Science Foundation funded Nanoscale Science and Engineering Center for Directed Assembly of Nanostructures (DMR 0117792).Yang, H. et al. | 2007
- 2873
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Photoinduced Self‐Assembly of TiO2 and SiO2 Nanoparticles on Sidewalls of Single‐Walled Carbon NanotubesShin, H. S. / Jang, Y. S. / Lee, Y. / Jung, Y. / Kim, S. B. / Choi, H. C. et al. | 2007
- 2873
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Photoinduced Self-Assembly of TiO2 and SiO2 Nanoparticles on Sidewalls of Single-Walled Carbon NanotubesFNR HREF="fn1">FN ID="fn1">This work was supported by the Basic Research Program of the KOSEF (R01-2004-000-10210-0), Nano-Bio Science & Technology Program of MOST (M10536090000-05N3609-00000), SRC-ERC Program (R11-2000-070-070020), the Second Stage of Brain Korea 21 Project, and Korean Research Foundation (MOEHRD, KRF-2005-005-J13103). Supporting Information is available online from Wiley InterScience or from the authors.Shin, H. S et al. | 2007
- 2877
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Facile Method of Controlling Monomer Sequence Distributions in Random CopolymersSemler, J. J. / Jhon, Y. K. / Tonelli, A. / Beevers, M. / Krishnamoorti, R. / Genzer, J. et al. | 2007
- 2877
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Facile Method of Controlling Monomer Sequence Distributions in Random CopolymersFNR HREF="fn1">FN ID="fn1">This work was supported by the National Science Foundation (Grant No. DMR-0353102). We acknowledge the support of the National Institute of Standards and Technology, U.S. Department of Commerce, in providing the neutron facilities used in this work. This work utilized facilities supported in part by the National Science Foundation under Agreement No. DMR-0454672. The authors gratefully acknowledge Angelica Sanchez for carrying out the DSC measurements and Hanna Gracz for performing the NMR experiments. We also thank Jack Douglas and Rajendra R. Bhat for useful discussions and comments.Semler, J. J et al. | 2007
- 2884
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Energetic Nitrogen Rich Salts of N,N-bis[1(2)H-Tetrazol-5-yl]amineFNR HREF="fn1">FN ID="fn1">The authors gratefully acknowledge the support of AFOSR (F49620-03-1-0209), NSF (CHE0315275), and ONR (N00014-06-1-1032). The Bruker (Siemens) SMART APEX diffraction facility was established at the University of Idaho with the assistance of the NSF-EPSCoR program and the M. J. Murdock Charitable Trust, Vancouver, WA. Supporting Information is available online from Wiley InterScience or from the authors.Guo, Y. et al. | 2007
- 2884
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Energetic Nitrogen Rich Salts of N,N‐bis[1(2)H‐Tetrazol‐5‐yl]amineGuo, Y. / Gao, H. / Twamley, B. / Shreeve, J. M. et al. | 2007
- 2889
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Visible-Light Photocatalytic Properties of Weak Magnetic BiFeO3 NanoparticlesFNR HREF="fn1">FN ID="fn1">This work was supported by the National Key Projects for Basic Research of China (2002CB613303, 2006CB921802) and the National Natural Science Foundation of China (50332020, 50528203, 20373025, and 20528302).Gao, F. et al. | 2007
- 2889
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Visible‐Light Photocatalytic Properties of Weak Magnetic BiFeO3 NanoparticlesGao, F. / Chen, X. Y. / Yin, K. B. / Dong, S. / Ren, Z. F. / Yuan, F. / Yu, T. / Zou, Z. G. / Liu, J.‐M. et al. | 2007
- 2893
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Electrode Grids for ITO Free Organic Photovoltaic DevicesTvingstedt, K. / Inganäs, O. et al. | 2007
- 2893
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Electrode Grids for ITO Free Organic Photovoltaic DevicesFNR HREF="fn1">FN ID="fn1">These investigations were financially supported by the Center of Organic Electronics (COE) at Linköping University, Sweden, financed by the Strategic Research Foundation SSF. Abay Gadisa is further acknowledged for the performed impedance measurements.Tvingstedt, K. et al. | 2007
- 2898
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Temperature Gating of the Ring‐Opening Process in Diarylethene Molecular SwitchesDulić, D. / Kudernac, T. / Pužys, A. / Feringa, B. L. / van Wees, B. J. et al. | 2007
- 2898
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Temperature Gating of the Ring-Opening Process in Diarylethene Molecular SwitchesFNR HREF="fn1">FN ID="fn1">D.D. and T.K. contributed equally to this work. We thank W. R. Browne, S. Watts, and N. Katsonis for useful suggestions and careful reading of this text. This work was financially supported both by NWO and FOM.Dulic, D. et al. | 2007
- 2903
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Hydrogel‐Encapsulated Microfabricated Haircells Mimicking Fish Cupula NeuromastPeleshanko, S. / Julian, M. D. / Ornatska, M. / McConney, M. E. / LeMieux, M. C. / Chen, N. / Tucker, C. / Yang, Y. / Liu, C. / Humphrey, J. A. C. et al. | 2007
- 2903
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Hydrogel-Encapsulated Microfabricated Haircells Mimicking Fish Cupula NeuromastFNR HREF="fn1">FN ID="fn1">Authors thank Prof. S. Coombs (Bowling Green State University) and Prof. F. Barth (University of Vienna) for help with the manuscript. This research is funded by the U.S. Defense Advanced Research Projects Agency and has been partially completed at Iowa State University.Peleshanko, S. et al. | 2007
- 2910
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Observation of the Pressure Dependent Reversible Enhancement of Tc and Loss of the Anomalous Constricted Hysteresis for [Ru2(O2CMe)4]3[Cr(CN)6]Shum, W. W. / Her, J.‐H. / Stephens, P. W. / Lee, Y. / Miller, J. S. et al. | 2007
- 2910
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Observation of the Pressure Dependent Reversible Enhancement of Tc and Loss of the Anomalous Constricted Hysteresis for [Ru2(O2CMe)4]3[Cr(CN)6]FNR HREF="fn1">FN ID="fn1">We thank Kendric J. Nelson (Utah), Konstantin I. Pokhodnya, and Arthur J. Epstein (Ohio State) for helpful discussions, and we gratefully acknowledge the continued partial support by the U.S. Department of Energy Division of Materials Science (Grant Nos. DE-FG03-93ER45504, and DE-FG02-01ER45931), the U.S. Air Force Office of Scientific Research (Grant No. F49620-03-1-0175), and the U.S. National Science Foundation (Grant No. 0553573). Use of the National Synchrotron Light Source, Brookhaven National Laboratory, was supported by the U.S. Department of Energy, Office of Basic Energy Sciences, under Contract No. DE-AC02-98CH10886. Supporting Information is available online from Wiley InterScience or from the authors.Shum, W. W et al. | 2007
- 2914
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Metal–Insulator Transition in Solution‐Processible Porphyrinic Field‐Effect TransistorsDhoot, A. S. / Aramaki, S. / Moses, D. / Heeger, A. J. et al. | 2007
- 2914
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Metal-Insulator Transition in Solution-Processible Porphyrinic Field-Effect TransistorsFNR HREF="fn1">FN ID="fn1">We are pleased to thank Dr. G. M. Wang and J. D. Yuen for providing valuable technical assistance and the patterned substrates. We acknowledge financial support from the Mitsubishi Chemical Center for Advanced Materials at UCSB and from the Heeger Center for Advanced Materials at the Gwangju Institute for Advanced Materials.Dhoot, A. S et al. | 2007
- 2914
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Metal-insulator transition in solution-processible prophyrinic field-effect transistorsDhoot, Anoop S. / Aramaki, Shinji / Moses, Daniel / Heeger, Alan J. et al. | 2007
- 2919
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The Direct Patterning of Nanoporous Interlayer Dielectric Insulator Films by Nanoimprint LithographyRo, H. W. / Jones, R. L. / Peng, H. / Hines, D. R. / Lee, H.‐J. / Lin, E. K. / Karim, A. / Yoon, D. Y. / Gidley, D. W. / Soles, C. L. et al. | 2007
- 2919
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The Direct Patterning of Nanoporous Interlayer Dielectric Insulator Films by Nanoimprint LithographyFNR HREF="fn1">FN ID="fn1">Official contribution of the National Institute of Standards and Technology; not subject to copyright in the United States. The error bars presented throughout this manuscript indicate the relative standard uncertainty of the measurement. Certain commercial materials and equipment are identified in this paper in order to specify adequately the experimental procedure. In no case does such identification imply recommendation by the National Institute of Standards and Technology nor does it imply that the material or equipment identified is necessarily the best available for this purpose. This work was supported in part by the System IC 2010 Project of Korea, the Chemistry and Molecular Engineering Program of Brain Korea 21 Project, and the NIST Office of Microelectronics Programs. We also acknowledge the Nanofabrication Laboratory in the NIST Center for Nanoscale Science and Technology (CNST) for the use of their facilities. Supporting Information is available online from Wiley InterScience or from the authors.Ro, H. W et al. | 2007
- 2925
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Structural evidence for Zn interstitials in ferromagnetic Zn(1-x)Co(x)O filmsMacManus-Driscoll, Judith L. / Khare, Neeraj / Liu, Yinglin / Vickers, Mary E. et al. | 2007
- 2925
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Structural Evidence for Zn Intersititials in Ferromagnetic Zn1–xCoxO FilmsMacManus‐Driscoll, J. L. / Khare, N. / Liu, Y. / Vickers, M. E. et al. | 2007
- 2925
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Structural Evidence for Zn Intersititials in Ferromagnetic Zn1-xCoxO FilmsFNR HREF="fn1">FN ID="fn1">N.K. and Y.L. are grateful to Engineering and Physical Sciences Research Council (EPSRC) (UK) for providing visiting fellowships. J.L.M.-D. and the University of Cambridge acknowledges the EU Marie Curie Excellence Grant, NanoFen, EXT-014156 for provision of funding.Macmanus-Driscoll, J. L et al. | 2007
- 2930
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Molecular Pressure SensorsFNR HREF="fn1">FN ID="fn1">This research is supported by grants from the National Science Foundation (CBET 0609087 and DMR 0606086) and the Petroleum Research Foundation (PRF-46204-AC7). Supporting Information is available online from Wiley InterScience or from the authors.Xu, H. et al. | 2007
- 2930
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Molecular Pressure SensorsXu, H. / Sun, F. C. / Shirvanyants, D. G. / Rubinstein, M. / Shabratov, D. / Beers, K. L. / Matyjaszewski, K. / Sheiko, S. S. et al. | 2007
- 2935
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Anchoring ZnO Particles on Functionalized Single Wall Carbon Nanotubes. Excited State Interactions and Charge CollectionVietmeyer, F. / Seger, B. / Kamat, P. V. et al. | 2007
- 2935
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Anchoring ZnO Particles on Functionalized Single Wall Carbon Nanotubes. Excited State Interactions and Charge CollectionFNR HREF="fn1">FN ID="fn1">The research described herein was supported by the Office of Basic Energy Sciences of the US Department of Energy. F. V. acknowledges the financial support of German Academic Exchange Service in the International Study and Training Partnerships (ISAP). We also thank Istvan Robel and Kensuke Takechi for their assistance in emission and photoelectrochemical measurements. This is contribution NDRL 4699 from the Notre Dame Radiation Laboratory.Vietmeyer, F. et al. | 2007
- 2941
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A Carbon Nanomattress: A New Nanosystem with Intrinsic, Tunable, Damping PropertiesFNR HREF="fn1">FN ID="fn1">The authors would like to thank the Singapore Insitute of Manufacturing Technology (SIMTech) and Jinu Paul from the National University of Singapore for their technical support. Supporting Information is available online from Wiley InterScience or from the author.Teo, E. H T et al. | 2007
- 2941
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A Carbon Nanomattress: A New Nanosystem with Intrinsic, Tunable, Damping PropertiesTeo, E. H. T. / Yung, W. K. P. / Chua, D. H. C. / Tay, B. K. et al. | 2007
- 2946
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Growth and Electrical Characteristics of Platinum‐Nanoparticle‐Catalyzed Silicon NanowiresGarnett, E. C. / Liang, W. / Yang, P. et al. | 2007
- 2946
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Growth and Electrical Characteristics of Platinum-Nanoparticle-Catalyzed Silicon NanowiresFNR HREF="fn1">FN ID="fn1">This work was supported by the National Science Foundation under Grant No. EEC-0425914 and DARPA-MARCO. We would like to thank the National Center for Electron Microscopy, the Berkeley Microfabrication Lab, and E. E. Haller for use of their facilities. E.G. would like to thank Josh Goldberger, Ben Yuhas, Lori Greene, and Andrea Tao for help with imaging and Susan Habas for providing the Pt nanoparticles.Garnett, E. C et al. | 2007
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Biomimetic Silica Formation: Effect of Block Copolypeptide Chemistry and Solution Conditions on Silica NanostructureFNR HREF="fn1">FN ID="fn1">D. F. S. acknowledges financial support from the Robert A. Welch foundation (A-1638), the Microscopy and Imaging Center at Texas A& M for access to the FE-SEM and TEM, J. M. Scholtz for access to the CD instrument, and the Chemistry Department at Texas A&M for access to the NMR and X-Ray diffraction facilities. Supporting Information is available online from Wiley InterScience or from the authors.Jan, J.-S. et al. | 2007
- 2951
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Biomimetic Silica Formation: Effect of Block Copolypeptide Chemistry and Solution Conditions on Silica NanostructureJan, J.‐S. / Shantz, D. F. et al. | 2007
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The Catalytic Synthesis of Three‐Dimensional Hierarchical Carbon Nanotube Composites with High Electrical Conductivity Based on Electrochemical Iron DepositionLi, N. / Chen, X. / Stoica, L. / Xia, W. / Qian, J. / Aßmann, J. / Schuhmann, W. / Muhler, M. et al. | 2007
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The Catalytic Synthesis of Three-Dimensional Hierarchical Carbon Nanotube Composites with High Electrical Conductivity Based on Electrochemical Iron DepositionFNR HREF="fn1">FN ID="fn1">We are grateful for the financial support by the MIWFT-NRW within the "Nachwuchsgruppe: Mikroelektrochemie zur Optimierung von Heterogenkatalysatoren für PEM-Brennstoffzellen" and the project "Lokale mikroelektrochemische Visualisierung von Katalysatoraktivitäten zur Optimierung von Direkt-Methanol-Brennstoffzellen (DMFC)" in cooperation with the Forschungszentrum Jülich (IWV3; Prof. Dr. D. Stolten). N. Li thanks the International Max Planck Research School of Surface and Interface Engineering in Advanced Materials (SurMat) for support.Li, N. et al. | 2007
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Long‐Range Resonant Energy Transfer for Enhanced Exciton Harvesting for Organic Solar CellsScully, S. R. / Armstrong, P. B. / Edder, C. / Fréchet, J. M. J. / McGehee, M. D. et al. | 2007
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Long-Range Resonant Energy Transfer for Enhanced Exciton Harvesting for Organic Solar CellsFNR HREF="fn1">FN ID="fn1">Support of this work by the Materials Sciences and Engineering Division of the U.S. Department of Energy under Contract No. DE-AC02-05CH11231 and the Center on Polymer Interfaces and Macromolecular Assemblies (CPIMA) is gratefully acknowledged. We also thank the DOW Chemical Company for providing materials.Scully, S. R et al. | 2007
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Surfactant-Modified Hydrophilic Nanostructured Porous Silicon for the Photosensitized Formation of Singlet Oxygen in WaterFNR HREF="fn1">FN ID="fn1">This work is part of the project PSY-NANO-Si financed under contract NMP4-CT-2004-013875 by the European Community.Chirvony, V. et al. | 2007
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Surfactant‐Modified Hydrophilic Nanostructured Porous Silicon for the Photosensitized Formation of Singlet Oxygen in WaterChirvony, V. / Chyrvonaya, A. / Ovejero, J. / Matveeva, E. / Goller, B. / Kovalev, D. / Huygens, A. / de Witte, P. et al. | 2007
- 2973
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Magnetic, Thermosensitive Microgels as Stimuli‐Responsive Emulsifiers Allowing for Remote Control of Separability and Stability of Oil in Water‐EmulsionsBrugger, B. / Richtering, W. et al. | 2007
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Magnetic, Thermosensitive Microgels as Stimuli-Responsive Emulsifiers Allowing for Remote Control of Separability and Stability of Oil in Water-EmulsionsFNR HREF="fn1">FN ID="fn1">The authors like to thank Christian Hahn for the preparation of hybrid microgels, Dr. K.-H.Phan (DWI at Aachen University) for the help with the TEM pictures and the Deutsche Forschungsgemeinschaft and the Fonds der Chemischen Industrie for their financial support.Brugger, B. et al. | 2007
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Controllable Synthesis of Two‐ Dimensional Metal Nanoparticle Arrays with Oriented Size and Number Density GradientsHan, M. / Xu, C. / Zhu, D. / Yang, L. / Zhang, J. / Chen, Y. / Ding, K. / Song, F. / Wang, G. et al. | 2007
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Controllable Synthesis of Two- Dimensional Metal Nanoparticle Arrays with Oriented Size and Number Density GradientsFNR HREF="fn1">FN ID="fn1">We thank the National Natural Science Foundation of China (grant numbers 60478012, 10674063, 90606002), and the Hi-tech Research and Development Program of China (contract number 2006AA03Z316) for financial support.Han, M. et al. | 2007
- 2984
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Capillarity‐Driven Assembly of Carbon Nanotubes on Substrates into Dense Vertically Aligned ArraysKaur, S. / Sahoo, S. / Ajayan, P. / Kane, R. S. et al. | 2007
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Capillarity-Driven Assembly of Carbon Nanotubes on Substrates into Dense Vertically Aligned ArraysFNR HREF="fn1">FN ID="fn1">The authors gratefully acknowledge the financial support from NSF (Grant No. 0408745). Appreciation is also extended to Ashavani Kumar and Victor Pushparaj for their help in photolithography and to Lijie Ci for providing carbon nanotube samples for electrical measurements. Supporting Information is available online from Wiley Interscience or from the authors.Kaur, S. et al. | 2007
- 2988
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Thermo and pH Dual‐Responsive Nanoparticles for Anti‐Cancer Drug DeliveryZhang, L. / Guo, R. / Yang, M. / Jiang, X. / Liu, B. et al. | 2007
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Thermo and pH Dual-Responsive Nanoparticles for Anti-Cancer Drug DeliveryFNR HREF="fn1">FN ID="fn1">Supported by the Natural Science Foundation of China (No. 50625311, No. 50573031), the 973 Program of MOST (No. 2003CB615600) and the Cultivation Fund of MOE of China. L. Z. also gratefully acknowledges partial financial support from China Postdoctoral Science Foundation and Jiangsu Planned Projects for Postdoctoral Research Funds. Supporting Information is available online from Wiley InterScience or from the authors.Zhang, L. et al. | 2007
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Nanostructure‐Based Leaf‐like Polyaniline in the Presence of an Amphiphilic Triblock CopolymerHan, J. / Song, G. / Guo, R. et al. | 2007
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Nanostructure-Based Leaf-like Polyaniline in the Presence of an Amphiphilic Triblock CopolymerFNR HREF="fn1">FN ID="fn1">Funding is acknowledged from the National Natural Scientific Foundation of China (No. 20633010). Supporting Information is available online from Wiley InterScience or from the authors.Han, J. et al. | 2007
- 3000
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Effect of Generation and Soft Lithography on Semiconducting Dendrimer LasersLawrence, J. R. / Namdas, E. B. / Richards, G. J. / Burn, P. L. / Samuel, I. D. W. et al. | 2007
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Effect of Generation and Soft Lithography on Semiconducting Dendrimer LasersFNR HREF="fn1">FN ID="fn1">The authors are grateful to EPSRC and CDT Oxford Ltd. for financial support and to Dr. Piers Andrew and Prof. Bill Barnes (University of Exeter) for the supply of etched silica substrates. We thank Mr Scott Richardson for the photograph in the graphical abstract. I.D.W.S. is an EPSRC Senior Research Fellow.Lawrence, J. R et al. | 2007
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Effect of generation and soft lithography on semiconducting dendrimers lasersLawrence, Justin R. / Namdas, Ebinazar B. / Richards, Gary J. / Burn, Paul L. / Samuel, Ifor D.W. et al. | 2007
- 3004
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Novel Structure of AAO Film Fabricated by Constant Current AnodizationZhao, S. / Chan, K. / Yelon, A. / Veres, T. et al. | 2007
- 3004
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Novel Structure of AAO Film Fabricated by Constant Current AnodizationFNR HREF="fn1">FN ID="fn1">The authors thank Helene Roberge, Bo Cui and Francois Normandin for their assistance with the sample preparation and analysis. This research has been supported by the National Sciences and Engineering Research Council of Canada (NSERC) and the National Research Council of Canada (NRC).Zhao, S. et al. | 2007
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High‐Performance Field‐Effect Transistor Based on Dibenzo[d,d′]thieno[3,2‐b;4,5‐b′]dithiophene, an Easily Synthesized Semiconductor with High Ionization PotentialGao, J. H. / Li, R. J. / Li, L. Q. / Meng, Q. / Jiang, H. / Li, H. X. / Hu, W. P. et al. | 2007
- 3008
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High-Performance Field-Effect Transistor Based on Dibenzo[d,dprime]thieno[3,2-b;4,5-bprime]dithiophene, an Easily Synthesized Semiconductor with High Ionization PotentialGao, J. H. / Li, R. J. / Li, L. Q. / Meng, Q. / Jiang, H. / Li, H. X. / Hu, W. P. et al. | 2007
- 3008
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High-Performance Field-Effect Transistor Based on Dibenzo[d,d']thieno[3,2-b;4,5-b']dithiophen- e, an Easily Synthesized Semiconductor with High Ionization PotentialFNR HREF="fn1">FN ID="fn1">The authors acknowledge financial support from the National Natural Science Foundation of China (20421101, 20404013, 20402015, 20571079, 20472089), the Ministry of Science and Technology of China (2006CB806200, 2006CB932100), and the Chinese Academy of Sciences.Gao, J. H et al. | 2007
- 3012
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Low-Temperature Epitaxial Growth of Vertical In2O3 Nanowires on A-Plane Sapphire with Hexagonal Cross-SectionFNR HREF="fn1">FN ID="fn1">This work is supported by the National Science Council of Taiwan. In addition, the authors are grateful for the financial support from the Ministry of Economic Affair of Taiwan, under the grant number 95-EC-17A-08-S1-0006.Chen, C.-J. et al. | 2007
- 3012
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Low‐Temperature Epitaxial Growth of Vertical In2O3 Nanowires on A‐Plane Sapphire with Hexagonal Cross‐SectionChen, C.‐J. / Xu, W.‐L. / Chern, M.‐Y. et al. | 2007
- 3016
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Mesoporous Titania Nanotubes: Their Preparation and Application as Electrode Materials for Rechargeable Lithium BatteriesWang, K. / Wei, M. / Morris, M. A. / Zhou, H. / Holmes, J. D. et al. | 2007
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Mesoporous Titania Nanotubes: Their Preparation and Application as Electrode Materials for Rechargeable Lithium BatteriesFNR HREF="fn1">FN ID="fn1">K.W. and M.W. contributed equally to this work. We gratefully acknowledge the financial support from Science Foundation Ireland (Grant number: 03-IN3-I375). K.W. thanks Dr. Xueyan Wu for kindly supplying the 50 nm AAO membranes. Supporting information is available online at Wiley InterScience or from the author.Wang, K. et al. | 2007
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Space‐Confined Formation of FePt Nanoparticles in Ordered Mesoporous Silica SBA‐15Kockrick, E. / Krawiec, P. / Schnelle, W. / Geiger, D. / Schappacher, F. M. / Pöttgen, R. / Kaskel, S. et al. | 2007
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Space-Confined Formation of FePt Nanoparticles in Ordered Mesoporous Silica SBA-15FNR HREF="fn1">FN ID="fn1">Supporting Information is available online from Wiley InterScience or from the authors.Kockrick, E. et al. | 2007
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Filling of TiO2 Nanotubes by Self‐Doping and ElectrodepositionMacak, J. M. / Gong, B. G. / Hueppe, M. / Schmuki, P. et al. | 2007
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Filling of TiO2 Nanotubes by Self-Doping and ElectrodepositionFNR HREF="fn1">FN ID="fn1">The authors would like to acknowledge Martin Kolacyak and Hans Rollig for valuable technical help. Martin Lemberger, Michael Jank and Tobias Erlbacher are acknowledged for conductivity measurements, Dr. Saule Aldabergerova for HRTEM. Supporting Information is available online from Wiley InterScience or from the authors.Macak, J. M et al. | 2007
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A Controllable Nanometer-Sized ValveFNR HREF="fn1">FN ID="fn1">We gratefully acknowledge support by the National Science Foundation Grant CTS 0340563. TJA also acknowledges support by the National Science Foundation REU Site Program in Functional Materials EEC 0243896. We also thank Drs. Ronald R. Chance, Harry W. Deckman, Tracy Q. Gardner, and Ben McCool for valuable discussions.Yu, M. et al. | 2007
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A Controllable Nanometer‐Sized ValveYu, M. / Falconer, J. L. / Amundsen, T. J. / Hong, M. / Noble, R. D. et al. | 2007
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Dibenzotetrathiafulvalene Bisimides: New Building Blocks for Organic Electronic Materials**Gao, X. K. / Wang, Y. / Yang, X. D. / Liu, Y. Q. / Qiu, W. F. / Wu, W. P. / Zhang, H. J. / Qi, T. / Liu, Y. / Lu, K. et al. | 2007
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Dibenzotetrathiafulvalene Bisimides: New Building Blocks for Organic Electronic Materials**FNR HREF="fn1">FN ID="fn1">The present research was financially supported by the National Natural Science Foundation (20472089, 90206049, 20421101, 20573115, 20573115, 20472089, 60671047, 50673093), the Major State Basic Research Development Program (2006CB806200, 2006CB932100) and the Chinese Academy of Sciences. Supporting Information is available online from Wiley InterScience of from the authors.Gao, X. K et al. | 2007
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A Supercritical‐Fluid Method for Growing Carbon NanotubesLi, Z. / Andzane, J. / Erts, D. / Tobin, J. M. / Wang, K. / Morris, M. A. / Attard, G. / Holmes, J. D. et al. | 2007
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A Supercritical-Fluid Method for Growing Carbon NanotubesFNR HREF="fn1">FN ID="fn1">This work was supported by the European Union through the DESYGN-IT project (STREP Project 505626-1), Enterprise Ireland (Project IP-2004-0183), Intel (Ireland), and the Council of Science of Latvia. The authors thank Uwe Vohrer for SEM and Trevor Woods for TGA measurements.Li, Z. et al. | 2007
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Synthesis and Thermoelectrical Characterization of Lead Chalcogenide NanowiresFNR HREF="fn1">FN ID="fn1">M. F. and A. I. H. contributed equally to this work. We thank Renkun Chen for helpful discussion and assistance with thermal characterization. A. I. H. thanks the National Science Foundation for an IGERT graduate research fellowship. We thank the National Center for Electron Microscopy and the UC Berkeley Microfabrication Laboratory for the use of their facilities.Fardy, M. et al. | 2007
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Synthesis and Thermoelectrical Characterization of Lead Chalcogenide NanowiresFardy, M. / Hochbaum, A. I. / Goldberger, J. / Zhang, M. M. / Yang, P. et al. | 2007
- 3052
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Polymer‐Based Photonic Crystals Fabricated with Single‐Step Electron‐Beam LithographyWu, C.‐S. / Lin, C.‐F. / Lin, H.‐Y. / Lee, C.‐L. / Chen, C.‐D. et al. | 2007
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Polymer-Based Photonic Crystals Fabricated with Single-Step Electron-Beam LithographyFNR HREF="fn1">FN ID="fn1">We would like to thank Y. C. Tsai for fruitful discussions about the 3D PC band gap. This work is supported by the National Science Council No. NSC 95-2112-M-001-062-MY3. The fabrication work was performed at the Core-facility Center, Academia Sinica.Wu, C.-S. et al. | 2007
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Author Index and Subject Index Adv. Mater. 19/2007| 2007
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Inside Front Cover: Combinatorial Modification of Degradable Polymers Enables Transfection of Human Cells Comparable to Adenovirus (Adv. Mater. 19/2007)Green, J. J. / Zugates, G. T. / Tedford, N. C. / Huang, Y.‐H. / Griffith, L. G. / Lauffenburger, D. A. / Sawicki, J. A. / Langer, R. / Anderson, D. G. et al. | 2007
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Cover Picture: Novel Structure of AAO Film Fabricated by Constant Current Anodization (Adv. Mater. 19/2007)Zhao, S. / Chan, K. / Yelon, A. / Veres, T. et al. | 2007