Contents: Adv. Mater. 20-2007 (English)
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Advanced materials
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2007
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Title:Contents: Adv. Mater. 20-2007
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Published in:Advanced materials ; 19, 20 ; 3067-3084
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BKL: 51.45 Werkstoffe mit besonderen Eigenschaften -
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Table of contents – Volume 19, Issue 20
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.
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Contents: Adv. Mater. 20/2007| 2007
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Bionanotechnology: Enabling Biomedical Research with NanomaterialsYang, H. / Xia, Y. et al. | 2007
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Bionanotechnology: Enabling Biomedical Research with NanomaterialsFNR HREF="fn1">FN ID="fn1">H.Y. thanks support from the U.S. National Science Foundation (NSF), Environmental Protection Agency (EPA), Department of Defence (DoD, a MURI subcontract), and National Institute of Environmental Health and Science (NIEHS, a pilot project). Y.X. thanks the National Institutes of Health (NIH) for a Director's Pioneer Award (2006-2011).Yang, H. et al. | 2007
- 3089
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Tissue Engineering Based on Cell Sheet TechnologyMatsuda, N. / Shimizu, T. / Yamato, M. / Okano, T. et al. | 2007
- 3089
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Tissue Engineering Based on Cell Sheet TechnologyFNR HREF="fn1">FN ID="fn1">We are gratefully thankful to our colleagues, Prof. Isao Ishikawa, Mr. Hidekazu Sekine (Institute of Advanced Biomedical Engineering and Science, Tokyo Women's Medical University), and Dr. Umber Cheema (University College London) for their kind assistance. The present work was supported by grants for High-Tech Research Center Program, Center of Excellence (COE) Program for the 21st Century from Ministry of Education, Culture, Sports, Science and Technology, Japan.Matsuda, N. et al. | 2007
- 3100
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SERS as a Foundation for Nanoscale, Optically Detected Biological LabelsDoering, W. E. / Piotti, M. E. / Natan, M. J. / Freeman, R. G. et al. | 2007
- 3109
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Hybrid Nanoparticles for Magnetic Resonance Imaging of Target‐Specific Viral Gene DeliveryHuh, Y.‐M. / Lee, E.‐S. / Lee, J.‐H. / Jun, Y.‐w. / Kim, P.‐H. / Yun, C.‐O. / Kim, J.‐H. / Suh, J.‐S. / Cheon, J. et al. | 2007
- 3109
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Hybrid Nanoparticles for Magnetic Resonance Imaging of Target-Specific Viral Gene DeliveryFNR HREF="fn1">FN ID="fn1">We would like to thank Dr. Y. J. Kim, J.-G. Kim, H. S. Kwon, and J. M. Oh for the TEM analyses (KBSI). This work is supported in part by the Korea Health 21 Research and Development Project (A06-00043433), the National Research Laboratory (NRL-2006-00457), NCI Center for Cancer Nanotechnology Excellence, Nanomedical National Core Research Center (R15-2004-024-00000-0), AOARD (FA520906P0170), KOSEF (R01-2006-000-10023-9), and BK-21 Project of Chemistry and Medicine.Huh, Y.-M. et al. | 2007
- 3113
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Toward the Accurate Read‐out of Quantum Dot Barcodes: Design of Deconvolution Algorithms and Assessment of Fluorescence Signals in BufferLee, J. A. / Hung, A. / Mardyani, S. / Rhee, A. / Klostranec, J. / Mu, Y. / Li, D. / Chan, W. C. W. et al. | 2007
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Toward the Accurate Read-out of Quantum Dot Barcodes: Design of Deconvolution Algorithms and Assessment of Fluorescence Signals in BufferFNR HREF="fn1">FN ID="fn1">This project was funded by Genome Canada through the Ontario Genome Institute. Y.M. acknowledges CSC (22822101) and NSFC (30200050) for visiting fellow support. J.K. and S.M. acknowledge NSERC for student fellowships.Lee, J. A et al. | 2007
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Geometric Considerations of Micro- to Nanoscale Elastomeric Post Arrays to Study Cellular Traction ForcesFNR HREF="fn1">FN ID="fn1">We gratefully acknowledge support from the Army Research Office-Multidisciplinary University Research Initiative, National Institutes of Health, RESBIO and the New Jersey Center for Biomaterials, Materials Research Science and Engineering Center and Nano-Bio Interface Center of the University of Pennsylvania. We thank Dana M. Pirone for critically reading this manuscript.Yang, M. T et al. | 2007
- 3119
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Geometric Considerations of Micro‐ to Nanoscale Elastomeric Post Arrays to Study Cellular Traction ForcesYang, M. T. / Sniadecki, N. J. / Chen, C. S. et al. | 2007
- 3124
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Testing Nanomaterials of Unknown Toxicity: An Example Based on Platinum Nanoparticles of Different ShapesElder, A. / Yang, H. / Gwiazda, R. / Teng, X. / Thurston, S. / He, H. / Oberdörster, G. et al. | 2007
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Testing Nanomaterials of Unknown Toxicity: An Example Based on Platinum Nanoparticles of Different ShapesFNR HREF="fn1">FN ID="fn1">This work was supported by grants from the U.S. Environmental Protection Agency (RD-83172201-0) and the Department of Defence (MURI FA9550-04-1-0430).Elder, A. et al. | 2007
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Calcium-Doped Organosilicate Nanoparticles as Gene Delivery Vehicles for Bone CellsFNR HREF="fn1">FN ID="fn1">The authors would like to thank Dr. Myron Spector of the Brigham and Women's Hospital for helpful discussions and donation of the primary osteoblasts. They would like to acknowledge Nicki Watson of the Whitehead Institute for her assistance with TEM. This work was sponsored by the Singapore-MIT Alliance. S.M. acknowledges the support of a National Science Foundation Graduate Research Fellowship. Supporting Information is available online from Wiley InterScience or from the authors.Moudgil, S. et al. | 2007
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Calcium‐Doped Organosilicate Nanoparticles as Gene Delivery Vehicles for Bone CellsMoudgil, S. / Ying, J. Y. et al. | 2007
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Gold Nanorods Mediate Tumor Cell Death by Compromising Membrane IntegrityFNR HREF="fn1">FN ID="fn1">This work was supported by the National Institutes of Health (EB-001777), the National Science Foundation (CHE-0243496), and a grant from the Oncological Sciences Center at Purdue University. The authors thank Hongtao Chen for his assistance in SPT analysis, Professor Philip Low for providing folate-Bodipy and KB cells, and Professor Stephen Konieczny for providing NIH-3T3 cells. Supporting Information is available online from Wiley InterScience or from the authors.Tong, L. et al. | 2007
- 3136
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Gold Nanorods Mediate Tumor Cell Death by Compromising Membrane IntegrityTong, L. / Zhao, Y. / Huff, T. B. / Hansen, M. N. / Wei, A. / Cheng, J.‐X. et al. | 2007
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Remote Control of Bioreactions in Multicompartment CapsulesFNR HREF="fn1">FN ID="fn1">The support by the Volkswagen Foundation (I-80 051-054) and the 6th FP EU-project STREP-NMP3-CT-2005-516922 "SelectNANO" is kindly acknowledged. We are grateful to Anne Heilig for AFM measurements and to Rona Pitschke for SEM measurements.Kreft, O. et al. | 2007
- 3142
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Remote Control of Bioreactions in Multicompartment CapsulesKreft, O. / Skirtach, A. G. / Sukhorukov, G. B. / Möhwald, H. et al. | 2007
- 3146
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In Situ Molecular Profiling of Breast Cancer Biomarkers with Multicolor Quantum DotsYezhelyev, M. V. / Al‐Hajj, A. / Morris, C. / Marcus, A. I. / Liu, T. / Lewis, M. / Cohen, C. / Zrazhevskiy, P. / Simons, J. W. / Rogatko, A. et al. | 2007
- 3146
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In Situ Molecular Profiling of Breast Cancer Biomarkers with Multicolor Quantum DotsFNR HREF="fn1">FN ID="fn1">This work is supported by the Emory-Georgia Tech CCNE consortium, Georgia Cancer Coalition (S.N. and R.M.O.R GCC Distinguished Scholars), and NSF (X.H.G. NSF-CAREER award). We are also grateful to Prof. Larry True (UW Pathology) for fruitful discussion.Yezhelyev, M. V et al. | 2007
- 3152
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Intracellular Enzymatic Formation of Nanofibers Results in Hydrogelation and Regulated Cell DeathYang, Z. M. / Xu, K. M. / Guo, Z. F. / Guo, Z. H. / Xu, B. et al. | 2007
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Intracellular Enzymatic Formation of Nanofibers Results in Hydrogelation and Regulated Cell DeathFNR HREF="fn1">FN ID="fn1">This work was partially supported by RGC (Hong Kong), EHIA (HKUST). Supporting Information is available online from Wiley InterScience or from the authors.Yang, Z. M et al. | 2007
- 3157
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Strategies for Optimized Radiolabeling of Nanoparticles for in vivo PET ImagingFNR HREF="fn1">FN ID="fn1">G.S., J.X., and A.H. contributed equally. This material is based upon work supported by the National Heart Lung and Blood Institute of the National Institutes of Health as a Program of Excellence in Nanotechnology (HL080729). The production of 64Cu is supported by the National Cancer Institute (CA86307). The authors thank Ms. N. Kohrt and Prof. S. Sakiyama-Elbert for their assistance with DLS measurements, and Mr. M. G. Veith for TEM imaging.Sun, G. et al. | 2007
- 3157
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Strategies for Optimized Radiolabeling of Nanoparticles for in vivo PET ImagingSun, G. / Xu, J. / Hagooly, A. / Rossin, R. / Li, Z. / Moore, D. A. / Hawker, C. J. / Welch, M. J. / Wooley, K. L. et al. | 2007
- 3163
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Controlled PEGylation of Monodisperse Fe3O4 Nanoparticles for Reduced Non‐Specific Uptake by Macrophage CellsXie, J. / Xu, C. / Kohler, N. / Hou, Y. / Sun, S. et al. | 2007
- 3163
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Controlled PEGylation of Monodisperse Fe3O4 Nanoparticles for Reduced Non-Specific Uptake by Macrophage CellsFNR HREF="fn1">FN ID="fn1">The work was supported by DARPA-ONR under grant Nos. N00014-01-1-0885, NERCE 14898830458, NSF-DMR 0606264, the Salomon award from Brown University, and the Frontier Research award from the Department of Chemistry, Brown University. Supporting Information is available online from Wiley InterScience or from the authors.Xie, J. et al. | 2007
- 3167
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Protein‐Directed Formation of Silver Nanoparticles on Carbon NanotubesBale, S. S. / Asuri, P. / Karajanagi, S. S. / Dordick, J. S. / Kane, R. S. et al. | 2007
- 3167
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Protein-Directed Formation of Silver Nanoparticles on Carbon NanotubesFNR HREF="fn1">FN ID="fn1">We acknowledge support from the NSF-Nanoscale Science and Engineering Center (DMR-0117792). This work made use of MRSEC Shared Facilities supported by the National Science Foundation under Award Number DMR-0213282 and NSF Laser Facility grant # CHE-0111370. We thank Raymond Dove at Rensselaer Nanotechnology Center, RPI for assistance with TEM and EDX spectroscopy. Supporting Information is available online from Wiley InterScience or from the authors.Bale, S. S et al. | 2007
- 3171
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Quantifying the Performance of Protein‐Resisting Surfaces at Ultra‐Low Protein Coverages using Kinesin Motor Proteins as ProbesKatira, P. / Agarwal, A. / Fischer, T. / Chen, H.‐Y. / Jiang, X. / Lahann, J. / Hess, H. et al. | 2007
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Quantifying the Performance of Protein-Resisting Surfaces at Ultra-Low Protein Coverages using Kinesin Motor Proteins as ProbesFNR HREF="fn1">FN ID="fn1">P.K. and A.A. contributed equally to this work. H.H. gratefully acknowledges financial support from the DOE Office of Basic Energy Sciences, the DARPA-DSO Biomolecular Motors Program (FA9550-05-1-366). T.F. thanks the Alexander-von-Humboldt foundation for support through a Feodor Lynen fellowship. J.L. gratefully acknowledges support from the NSF in form of a CAREER grant (DMR-0449462) and funding form the NSF under the MRI program (DMR 0420785).Katira, P. et al. | 2007
- 3177
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Gold Nanocages for Biomedical ApplicationsFNR HREF="fn1">FN ID="fn1">This work was supported in part by a Director's Pioneer Award (5DP1OD000798-Y.X.) and a grant (R01-CA120480-X.D.L.) from NIH, a grant (DMR-0451788-Y.X.) and Career Award (X.D.L.) from NSF, a fellowship from David and Lucile Packard Foundation (Y.X.), and a DARPA-DURINT subcontract from Harvard University (Y.X.). Y.X. is an Alfred P. Sloan Research Fellow (2000-2005) and a Camille Dreyfus Teacher Scholar (2002-2007). L.A. thanks the Center for Nanotechnology at UW for an IGERT Student Fellowship jointly sponsored by NSF and NCI. Part of the work was performed at the Nanotech User Facility (NTUF) of the UW Center for Nanotechnology, a member of the National Nanotechnology Infrastructure Network (NNIN) funded by NSF.Skrabalak, S. E et al. | 2007
- 3177
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Gold Nanocages for Biomedical ApplicationsSkrabalak, S. E. / Chen, J. / Au, L. / Lu, X. / Li, X. / Xia, Y. et al. | 2007
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Frontispiece Adv. Mater. 20/2007| 2007
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Advances in Liquid-Electrolyte and Solid-State Dye-Sensitized Solar CellsFNR HREF="fn1">FN ID="fn1">H.J.S. thanks Clare College for funding via a Junior Research Fellowship. L.S.-M. acknowledges funding from the European Commission (Marie Curie Excellence Grant "NanoFen", MEXT-CT-2004-014156) and thanks the Royal Society for a University Research Fellowship. The authors thank Prof. Michael Grätzel for introducing them to dye-sensitized solar cells and Dr. Bernard Wenger for valuable discussions.Snaith, H. J et al. | 2007
- 3187
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Advances in Liquid‐Electrolyte and Solid‐State Dye‐Sensitized Solar CellsSnaith, H. J. / Schmidt‐Mende, L. et al. | 2007
- 3201
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Organic BioelectronicsBerggren, M. / Richter‐Dahlfors, A. et al. | 2007
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Organic BioelectronicsFNR HREF="fn1">FN ID="fn1">The authors acknowledge SSF (INGVAR, OBOE and Bio-X projects), KVA (Göran Gustafsson Price), Linköpings universitet, Acreo institute and VR for financial support. Also, the authors wish to thank Ola Hermansson and Liv Widell for providing the graphic illustration of the introduction.Berggren, M. et al. | 2007
- 3214
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Carbon Nanotubes for Electronic and Electrochemical Detection of BiomoleculesKim, S. N. / Rusling, J. F. / Papadimitrakopoulos, F. et al. | 2007
- 3214
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Carbon Nanotubes for Electronic and Electrochemical Detection of BiomoleculesFNR HREF="fn1">FN ID="fn1">This work has been supported in part by PHS grant ES013557 from NIEHS-NIH, U.S. Army Research Office (ARO) grant DAAD-02-1-0381, AFSOR FA9550-06-0030 and US Army Medical Research Grant W81XWH-05-1-0539, and NSF DMI 0303950. The authors wish to thank Drs. J. Silvio Gutkind and Vyomesh Patel of the National Institute of Dental and Craniofacial Research for collaboration in biomarker detection, Dr. P. Pehrsson of Naval Research Laboratory for stimulating discussions and Mr. Bhaskara Chikkaveeraiah for technical assistance.Kim, S. N et al. | 2007
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Spatial Forcing of Self‐Organized Microwrinkles by Periodic NanopatternsOhzono, T. / Watanabe, H. / Vendamme, R. / Kamaga, C. / Kunitake, T. / Ishihara, T. / Shimomura, M. et al. | 2007
- 3229
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Spatial Forcing of Self-Organized Microwrinkles by Periodic NanopatternsFNR HREF="fn1">FN ID="fn1">This work was partly supported by a grant-in-aid for young scientists (B) (No. 18750195) of the Ministry of Education, Culture, Sports, Science and Technology, Japan. We thank N. Uchida, T. Yamaguchi, M. Eiswirth, M. Aono, T. Isoshima, M. Hara, S. Matsushita, T. Higuchi, and N. Fujikawa for their informative discussions and supporting the experiments.Ohzono, T. et al. | 2007
- 3233
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First‐Principles Determination of Multicomponent Hydride Phase Diagrams: Application to the Li‐Mg‐N‐H SystemR. Akbarzadeh, A. / Ozoliņš, V. / Wolverton, C. et al. | 2007
- 3233
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First-Principles Determination of Multicomponent Hydride Phase Diagrams: Application to the Li-Mg-N-H SystemFNR HREF="fn1">FN ID="fn1">The authors acknowledge financial support from the US DOE under grants DE-FG02-05ER46253 and DE-FC36-04GO14013.Akbarzadeh, A.R. et al. | 2007
- 3240
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Unique Polymorphism of OligothiophenesPan, H. / Liu, P. / Li, Y. / Wu, Y. / Ong, B. S. / Zhu, S. / Xu, G. et al. | 2007
- 3240
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Unique Polymorphism of OligothiophenesFNR HREF="fn1">FN ID="fn1">Partial financial supports of this work were provided by Natural Science and Engineering Research Council of Canada (NSERC) and Xerox Foundation. Supporting Information is available online from Wiley InterScience or from the authors.Pan, H. et al. | 2007
- 3244
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Photoinduced Isotropic State of Cholesteric Liquid Crystals: Novel Dynamic Photonic MaterialsFNR HREF="fn1">FN ID="fn1">This work was supported by US AFOSR STTR and US AF SBIR programs.Hrozhyk, U. A et al. | 2007
- 3244
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Photoinduced Isotropic State of Cholesteric Liquid Crystals: Novel Dynamic Photonic MaterialsHrozhyk, U. A. / Serak, S. V. / Tabiryan, N. V. / Bunning, T. J. et al. | 2007
- 3248
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On‐Substrate Synthesis of Molecular Conductor Films and CircuitsHiraoka, M. / Hasegawa, T. / Yamada, To. / Takahashi, Y. / Horiuchi, S. / Tokura, Y. et al. | 2007
- 3252
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Flexible Inorganic/Organic Hybrid Thin‐Film Transistors Using All‐Transparent Component MaterialsWang, L. / Yoon, M.‐H. / Facchetti, A. / Marks, T J. et al. | 2007
- 3252
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Flexible Inorganic-Organic Hybrid Thin-Film Transistors Using All-Transparent Component MaterialsFNR HREF="fn1">FN ID="fn1">We thank the NASA Institute for Nanaoelectronics and Computing (NCC2-3163) and DARPA-ARO (W911NF-05-1-0187) for support of this research. Characterization facilities were provided by the Northwestern University MRSEC (NSF-DMR-00760097). Supporting Information is available online from Wiley InterScience or from the authors.Wang, L. et al. | 2007
- 3257
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Localized Charge Transfer in a Molecularly Doped Conducting PolymerFNR HREF="fn1">FN ID="fn1">We acknowledge financial support from the Emmy Noether program (DFG).Aziz, E. F et al. | 2007
- 3257
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Localized Charge Transfer in a Molecularly Doped Conducting PolymerAziz, E. F. / Vollmer, A. / Eisebitt, S. / Eberhardt, W. / Pingel, P. / Neher, D. / Koch, N. et al. | 2007
- 3261
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Direct Fast Patterning of Conductive Polymers Using Agarose StampingHansen, T. S. / West, K. / Hassager, O. / Larsen, N. B. et al. | 2007
- 3261
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Direct Fast Patterning of Conductive Polymers Using Agarose StampingFNR HREF="fn1">FN ID="fn1">This work has been supported by the Graduate School of Polymer Science, Risø National Laboratory, the Technical University of Denmark, and by the Danish Research Council for Technology and Production Sciences grant no. 26-04-0074.Hansen, T. S et al. | 2007
- 3266
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Structural Determination of Light‐Emitting Inorganic Nanoparticles with Complex Core/Shell ArchitecturesDiMaio, J. R. / Kokuoz, B. / James, T. / Ballato, J. et al. | 2007
- 3266
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Structural Determination of Light-Emitting Inorganic Nanoparticles with Complex Core-Shell ArchitecturesFNR HREF="fn1">FN ID="fn1">The authors gratefully acknowledge financial support for this research from the US Army through the South Carolina Research Authority (sub-recipient agreement 2001-509, task order 0007, Active Coatings Technology program) and thank Dr. JoAn Hudson of the Clemson University Electron Microscope Laboratory for the HRTEM imaging. Supporting Information is available online from Wiley InterScience or from the author.Dimaio, J. R et al. | 2007
- 3271
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Novel Complex Nanostructure from Directed Assembly of Block Copolymers on Incommensurate Surface PatternsKim, S. O. / Kim, B. H. / Meng, D. / Shin, D. O. / Koo, C. M. / Solak, H. H. / Wang, Q. et al. | 2007
- 3271
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Novel Complex Nanostructure from Directed Assembly of Block Copolymers on Incommensurate Surface PatternsFNR HREF="fn1">FN ID="fn1">The experimental portion of this research was performed in the laboratories of Prof. Paul F. Nealey at the University of Wisconsin. The authors thank National Nanofab Center (NNFC) in Korea for technical support for characterization. This work was supported by the second stage of the Brain Korea 21 Project, the Basic Research Program of the Korea Science & Engineering Foundation (R01-2005-000-10456-0), and Colorado State University. Supporting Information is available online from Wiley InterScience or from the authors.Kim, S. O et al. | 2007
- 3276
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Spectral Redistribution in Spontaneous Emission from Quantum-Dot-Infiltrated 3D Woodpile Photonic Crystals for TelecommunicationsFNR HREF="fn1">FN ID="fn1">The authors thank Mr. Michael Ventura for useful discussions in time-resolved experiments. This work was produced with the assistance of the Australian Research Council under the ARC Centres of Excellence program. CUDOS (the Centre for Ultrahigh-bandwidth Devices for Optical Systems) is an ARC Centre of Excellence.Li, J. et al. | 2007
- 3276
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Spectral Redistribution in Spontaneous Emission from Quantum‐Dot‐Infiltrated 3D Woodpile Photonic Crystals for TelecommunicationsLi, J. / Jia, B. / Zhou, G. / Bullen, C. / Serbin, J. / Gu, M. et al. | 2007
- 3281
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A Methyl Tricyanoethylenecarboxylate-Based Room-Temperature MagnetFNR HREF="fn1">FN ID="fn1">We thank Krzysztof Swierczek (Utah) 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), and the U.S. Air Force Office of Scientific Research (Grant No. F49620-03-1-0175).Pokhodnya, K. I et al. | 2007
- 3281
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A Methyl Tricyanoethylenecarboxylate‐Based Room‐Temperature MagnetPokhodnya, K. I. / Lefler, B. / Miller, J. S. et al. | 2007
- 3286
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Directed Synthesis of Molecularly Braided Magnetic Nanoparticle Chains Using Polyelectrolyte and Difunctional CouplersYan, Q. / Purkayastha, A. / Gandhi, D. / Li, H. / Kim, T. / Ramanath, G. et al. | 2007
- 3286
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Directed Synthesis of Molecularly Braided Magnetic Nanoparticle Chains Using Polyelectrolyte and Difunctional CouplersFNR HREF="fn1">FN ID="fn1">We gratefully acknowledge funding from NSF through DMR 0519081 and ECS 0501488 grants, NY state through the Interconnect Focus Center, and a Honda Research Initiation Grant. Supporting Information is available from Wiley InterScience or from the Author.Yan, Q. et al. | 2007
- 3286
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Directed synthesis of molecularly braded magnetic nanoparticle chains using polyelectrolyte and difunctional couplerYan, Qingyu / Purkayastha, Arup / Gandhi, Darshan / Li, Huafang / Kim, Taegyun / Ramanath, Ganapathiraman et al. | 2007
- 3291
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Photoluminescent Paper Based on Poly(fluorene‐co‐fluorenone) Particles Adsorption on Modified Cellulose FibersSarrazin, P. / Valecce, L. / Beneventi, D. / Chaussy, D. / Vurth, L. / Stephan, O. et al. | 2007
- 3295
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Fungus‐Based Synthesis of Chemically Difficult‐To‐Synthesize Multifunctional Nanoparticles of CuAlO2Ahmad, A. / Jagadale, T. / Dhas, V. / Khan, S. / Patil, S. / Pasricha, R. / Ravi, V. / Ogale, S. et al. | 2007
- 3295
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Fungus-Based Synthesis of Chemically Difficult-To-Synthesize Multifunctional Nanoparticles of CuAlO2FNR HREF="fn1">FN ID="fn1">S. Ogale would like to thank the Department of Science and Technology (DST), Govt. of India for the award of a Ramanujan Fellowship and BRNS (DAE, GOI) for a research grant. A. Ahmad and S. Ogale acknowledge the DST for setting up a unit on Nanoscience and Technology (DST-UNANST) at NCL, Pune. Thanks are also due to V. N. Bhoraskar and S. D. Dhole (Pune University) for help with RF measurements, Mr. K. R. Patil for XPS data, Arti Harle for TEM data, and Mr. Sarthak Sawarkar for help with German translation of reference 24. Supporting Information is available online from Wiley InterScience or from the author.Ahmad, A. et al. | 2007
- 3300
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Ultrathick Freestanding Aligned Carbon Nanotube FilmsCi, L. / Manikoth, S. M. / Li, X. / Vajtai, R. / Ajayan, P. M. et al. | 2007
- 3300
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Ultrathick Freestanding Aligned Carbon Nanotube FilmsFNR HREF="fn1">FN ID="fn1">The authors acknowledge support from the Interconnect Focus Center, one of five research centers funded under the Focus Center Research Program, a Semiconductor Research Corporation program.Ci, L. et al. | 2007
- 3304
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Down‐ and Up‐Conversion Luminescent NanorodsWang, L. / Li, P. / Li, Y. et al. | 2007
- 3304
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Down- and Up-Conversion Luminescent NanorodsFNR HREF="fn1">FN ID="fn1">This work was supported by NSFC (90606006), the Foundation for the Author of National Excellent Doctoral Dissertation of China and the State Key Project of Fundamental Research for Nanoscience and Nanotechnology (2006CBON0300).Wang, L. et al. | 2007
- 3308
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A Conjugated Polymer for Near Infrared Optoelectronic ApplicationsPerzon, E. / Zhang, F. / Andersson, M. / Mammo, W. / Inganäs, O. / Andersson, M. R. et al. | 2007
- 3308
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A Conjugated Polymer for Near Infrared Optoelectronic ApplicationsFNR HREF="fn1">FN ID="fn1">The support from the Swedish Ministry of Education, the Swedish Research Council and the Swedish Foundation of Strategic Research are gratefully acknowledged. W.M. acknowledges the International Programme in the Chemical Sciences (IPICS) for financial support.Perzon, E. et al. | 2007
- 3312
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Assembly of Cobalt Phthalocyanine Stacks inside Carbon NanotubesSchulte, K. / Swarbrick, J. C. / Smith, N. A. / Bondino, F. / Magnano, E. / Khlobystov, A. N. et al. | 2007
- 3312
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Assembly of Cobalt Phthalocyanine Stacks inside Carbon NanotubesFNR HREF="fn1">FN ID="fn1">We gratefully acknowledge ELETTRA and the European Community for financial support under EU contract RII3-CT-2004-506008 (IA-SFS), and thank Prof. Phil Moriarty for valuable discussions. K.S. is supported by an Anne McLaren Fellowship from the University of Nottingham. A.N.K. is supported by the Royal Society, EPSRC and the European Science Foundation.Schulte, K. et al. | 2007
- 3317
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Poly(1,3‐phenylene‐5‐phosphonic Acid), a Fully Aromatic Polyelectrolyte with High Ion Exchange CapacityRager, T. / Schuster, M. / Steininger, H. / Kreuer, K.‐D. et al. | 2007
- 3317
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Poly(1,3-phenylene-5-phosphonic Acid), a Fully Aromatic Polyelectrolyte with High Ion Exchange CapacityFNR HREF="fn1">FN ID="fn1">TR gratefully acknowledges discussions with C.-W. Schläpfer (Fribourg) and W. H. Meyer (Mainz). The authors thank the analytics group at the MPI for polymer research (Mainz) for the GPC measurements. Financial support was obtained by the Deutsche Forschungsgemeinschaft (KR 794), the German Bundesministerium für Bildung und Forschung (0329567), and the Stiftung Energieforschung Baden-Württemberg (A 19603).Rager, T. et al. | 2007
- 3322
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Enhanced Response of n‐Channel Naphthalenetetracarboxylic Diimide Transistors to Dimethyl Methylphosphonate Using Phenolic ReceptorsSee, K. C. / Becknell, A. / Miragliotta, J. / Katz, H. E. et al. | 2007
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Enhanced Response of n-Channel Naphthalenetetracarboxylic Diimide Transistors to Dimethyl Methylphosphonate Using Phenolic ReceptorsFNR HREF="fn1">FN ID="fn1">This work was primarily supported by the Johns Hopkins Applied Physics Laboratory Fellowship and Partnership programs. Additional support of the NSF SENSORS program is also gratefully acknowledged. Thanks to Jia Huang for helpful discussion and Mark Koontz for assistance with SEM imaging. Additional thanks to Lesly McAnelly at the Johns Hopkins Applied Physics Lab for oxidation of silicon wafers as well as shadow mask production.See, K. C et al. | 2007
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Double‐Walled SnO2 Nano‐Cocoons with Movable Magnetic CoresLou, X. W. / Yuan, C. / Archer, L. A. et al. | 2007
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Double-Walled SnO2 Nano-Cocoons with Movable Magnetic CoresFNR HREF="fn1">FN ID="fn1">We thank Mr. Yasuyuki and Prof. H. D. Abruña for useful discussions, Mr. Chris Orilall for BET measurement. We are grateful to the National Science Foundation (DMR 0404278) for supporting this study. Facilities available through the Cornell Center for Materials Research (CCMR), a Materials Research Science and Engineering Center of the National Science Foundation (DMR 0079992) were used for this study. Supporting Information is available online from Wiley InterScience or from the authors.Lou, X. W et al. | 2007
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Amphoteric Phosphorus Doping for Stable p‐Type ZnOAllenic, A. / Guo, W. / Chen, Y. B. / Katz, M. B. / Zhao, G. Y. / Che, Y. / Hu, Z. D. / Liu, B. / Zhang, S. B. / Pan, X. Q. et al. | 2007
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Amphoteric Phosphorus Doping for Stable p-Type ZnOFNR HREF="fn1">FN ID="fn1">This work was supported by NSF-DMR 0308012, IMRA America Inc., and DOE-BES DE-AC36-99GO10337.Allenic, A. et al. | 2007
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Increase of the Efficiency of Quasi‐Solid State Dye‐Sensitized Solar Cells by a Synergy between Titania Nanocrystallites of Two Distinct Nanoparticle SizesStathatos, E. / Lianos, P. et al. | 2007
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Increase of the Efficiency of Quasi-Solid State Dye-Sensitized Solar Cells by a Synergy between Titania Nanocrystallites of Two Distinct Nanoparticle SizesFNR HREF="fn1">FN ID="fn1">Supporting Information is available online from Wiley InterScience or from the authors.Stathatos, E. et al. | 2007
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Smart Self-Adjustment of Surface Micelles of an Amphiphilic Block Copolymer to Nanoscopic Pattern BoundariesFNR HREF="fn1">FN ID="fn1">B.Y. and J.H. contributed equally to this work. We thank Nippon Soda Co., Ltd. for providing the block copolymer. We are very grateful to B. Davis, G. Wallraff, M, Hart, and M. Sanchez for their help in preparing patterned substrate. This work was supported by a project of NGNT (No.10024135-2005-11) and a grant (f0004091) from the Information Display R&D Center, one of the 21st Century Frontier R&D Programs funded by the Ministry of Commerce, Industry and Energy of the Korean Government. This work was also supported by the Second Stage of Brain Korea 21 Project in 2006 and Seoul Research and Business Development Program (10816).Yoon, B. et al. | 2007
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Smart Self‐Adjustment of Surface Micelles of an Amphiphilic Block Copolymer to Nanoscopic Pattern BoundariesYoon, B. / Huh, J. / Ito, H. / Frommer, J. / Sohn, B.‐H. / Kim, J. H. / Thomas, E. L. / Park, C. / Kim, H.‐C. et al. | 2007
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A Facile Synthesis of SmCo5 Magnets from Core/Shell Co/Sm2O3 NanoparticlesHou, Y. / Xu, Z. / Peng, S. / Rong, C. / Liu, J. P. / Sun, S. et al. | 2007
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A Facile Synthesis of SmCo5 Magnets from Core-Shell Co-Sm2O3 NanoparticlesFNR HREF="fn1">FN ID="fn1">Y. Hou and Z. Xu contributed equally to this work. This work was supported by ONR-MURI under Grant No. N00 014-05-1-0497.Hou, Y. et al. | 2007
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Helical Polyaniline Nanofibers Induced by Chiral Dopants by a Polymerization ProcessYan, Y. / Yu, Z. / Huang, Y. W. / Yuan, W. X. / Wei, Z. X. et al. | 2007
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Helical Polyaniline Nanofibers Induced by Chiral Dopants by a Polymerization ProcessFNR HREF="fn1">FN ID="fn1">The authors acknowledge support from the National Natural Science Foundation of China (20604008), the Ministry of Science and Technology of China (2005CB724700, 2006CB932100), and the Chinese Academy of Science.Yan, Y. et al. | 2007
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Structure-Dependent Electrical Properties of Carbon Nanotube FibersFNR HREF="fn1">FN ID="fn1">This work was supported by the Laboratory Directed Research and Development (LDRD) program office of Los Alamos National Laboratory. We thank Dr. Honghui Zhou for her help in electrical measurements. Supporting Information is available online from Wiley InterScience or from the authors.Li, Q. W et al. | 2007
- 3358
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Structure‐Dependent Electrical Properties of Carbon Nanotube FibersLi, Q. W. / Li, Y. / Zhang, X. F. / Chikkannanavar, S. B. / Zhao, Y. H. / Dangelewicz, A. M. / Zheng, L. X. / Doorn, S. K. / Jia, Q. X. / Peterson, D. E. et al. | 2007
- 3364
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Cathodic and Anodic Material Diffusion in Polymer/Semiconductor‐Nanocrystal Composite DevicesGallardo, D. E. / Bertoni, C. / Dunn, S. / Gaponik, N. / Eychmüller, A. et al. | 2007
- 3364
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Cathodic and Anodic Material Diffusion in Polymer-Semiconductor-Nanocrystal Composite DevicesFNR HREF="fn1">FN ID="fn1">We would like to thank Mr Richard J. Chater, from Imperial College in London, for his assistance with SIMS analyses.Gallardo, D. E et al. | 2007
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Cellulose I Nanolayers Designed by Self‐Assembly of its Thiosemicarbazone on a Gold SubstrateYokota, S. / Kitaoka, T. / Sugiyama, J. / Wariishi, H. et al. | 2007
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Cellulose I Nanolayers Designed by Self-Assembly of its Thiosemicarbazone on a Gold SubstrateFNR HREF="fn1">FN ID="fn1">This research was financially supported by the Ministry of Education, Culture, Sports, Science and Technology (MEXT), Japan, through a Grant-in-Aid for Young Scientists (No. 17688008). Supporting Information is available online from Wiley InterScience or from the author.Yokota, S. et al. | 2007
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Improved Performance from Multilayer Quantum Dot Light-Emitting Diodes via Thermal Annealing of the Quantum Dot LayerFNR HREF="fn1">FN ID="fn1">This work was supported by the National Science Foundation (NSF-STC program under DMR-0120967 and DMR-0449442). Supporting Information is available online at Wiley InterScience or from the author.Niu, Y.H. et al. | 2007
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Improved Performance from Multilayer Quantum Dot Light‐Emitting Diodes via Thermal Annealing of the Quantum Dot LayerNiu, Y. H. / Munro, A. M. / Cheng, Y.‐J. / Tian, Y. Q. / Liu, M. S. / Zhao, J. L. / Bardecker, J. A. / Jen‐La Plante, I. / Ginger, D. S. / Jen, A. K.‐Y. et al. | 2007
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Dynamic Materials Based on a Protein Conformational ChangeFNR HREF="fn1">FN ID="fn1">This work was supported by the American Chemical Society Petroleum Research Fund (44235-G7). The authors thank Wei-Jen Tang for providing engineered CaM plasmids, and Milan Mrksich for helpful discussions. Supporting Information is available online from Wiley InterScience or from the authors.Sui, Z. et al. | 2007
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Dynamic Materials Based on a Protein Conformational ChangeSui, Z. / King, W. J. / Murphy, W. L. et al. | 2007
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Synthesis, Characterization, and Field‐Effect Transistor Performance of Pentacene DerivativesOkamoto, T. / Senatore, M. L. / Ling, M.‐M. / Mallik, A. B. / Tang, M. L. / Bao, Z. et al. | 2007
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Synthesis, Characterization, and Field-Effect Transistor Performance of Pentacene DerivativesFNR HREF="fn1">FN ID="fn1">Supporting Information is available online from Wiley InterScience or from the author.Okamoto, T. et al. | 2007
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Shape-Controlled Synthesis of Metal Nanostructures: The Case of PalladiumFNR HREF="fn1">FN ID="fn1">This work was supported in part by a grant from ACS (PRF-44353-AC10), a grant from NSF (DMR-0451788), a fellowship from the David and Lucile Packard Foundation, and a DARPA-DURINT subcontract from Harvard University. Y.X. is an Alfred P. Sloan Research Fellow (2000-2005) and a Camille Dreyfus Teacher Scholar (2002-2007). Part of the electron microscopy work was performed at the Nanotech User Facility (NTUF) of the Center for Nanotechnology, a member of the National Nanotechnology Infrastructure Network (NNIN) funded by NSF.Xiong, Y. et al. | 2007
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Shape‐Controlled Synthesis of Metal Nanostructures: The Case of PalladiumXiong, Y. / Xia, Y. et al. | 2007
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Book Review: Nanobiotechnology II. More Concepts and Applications. By Chad A. Mirkin and Christof M. Niemeyer (Eds.).Gooding, John Justin et al. | 2007
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Book Review: Metal Based Thin Films for Electronics. By Klaus Wetzig and Claus M. Schneider (Eds.).Ho, Paul S. et al. | 2007
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Author Index and Subject Index Adv. Mater. 20/2007| 2007
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Inside Front Cover: Hybrid Nanoparticles for Magnetic Resonance Imaging of Target‐Specific Viral Gene Delivery (Adv. Mater. 20/2007)Huh, Y.‐M. / Lee, E.‐S. / Lee, J.‐H. / Jun, Y.‐w. / Kim, P.‐H. / Yun, C.‐O. / Kim, J.‐H. / Suh, J.‐S. / Cheon, J. et al. | 2007
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Cover Picture: Bionanotechnology: Enabling Biomedical Research with Nanomaterials (Adv. Mater. 20/2007)Yang, H. / Xia, Y. et al. | 2007