Fault-tolerant dielectric elastomer actuators using single-walled carbon nanotube electrodes (English)
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In:
Advanced Materials, Weinheim
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20
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621-625
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2008
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ISSN:
- Article (Journal) / Print
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Title:Fault-tolerant dielectric elastomer actuators using single-walled carbon nanotube electrodes
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Additional title:Fehlertolerante Aktoren aus einem dielektrischen Elastomer mit Elektroden aus einwandigen Kohlenstoff-Nanoröhrchen
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Contributors:Yuan, Wei ( author ) / Hu, Liangbing ( author ) / Yu, Zhibin ( author ) / Lam, Tuling ( author ) / Biggs, James ( author ) / Ha, Soon M. ( author ) / Xi, Dongjuan ( author ) / Chen, Bin ( author ) / Senesky, Matthew K. ( author ) / Grüner, George ( author )
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Published in:Advanced Materials, Weinheim ; 20, 3 ; 621-625
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Publisher:
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Publication date:2008
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Size:5 Seiten, 5 Bilder, 27 Quellen
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ISSN:
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Coden:
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DOI:
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Type of media:Article (Journal)
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Type of material:Print
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Language:English
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Keywords:
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Source:
Table of contents – Volume 20, Issue 3
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.
- 375
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Contents: Adv. Mater. 3/2008| 2008
- 389
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High‐Surface‐Area Mesoporous Germanium from Oxidative Polymerization of the Deltahedral [Ge9]4– Cluster: Electronic Structure Modulation with Donor and Acceptor MoleculesArmatas, G. S. / Kanatzidis, M. G. et al. | 2008
- 391
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Progress in Nanoengineered Microstructures for Tunable High-Current, High-Temperature Superconducting WiresFNR HREF="fn1">FN ID="fn1">This work was supported by the U.S. Department of Energy, Office of Electricity Delivery and Energy Reliability.Holesinger, T. G et al. | 2008
- 391
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Progress in Nanoengineered Microstructures for Tunable High‐Current, High‐Temperature Superconducting WiresHolesinger, T. G. / Civale, L. / Maiorov, B. / Feldmann, D. M. / Coulter, J. Y. / Miller, D. J. / Maroni, V. A. / Chen, Z. / Larbalestier, D. C. / Feenstra, R. et al. | 2008
- 409
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Molecular Level Control over Hierarchical Structure Formation and Polymerization of Oligopeptide‐Polymer ConjugatesJahnke, E. / Severin, N. / Kreutzkamp, P. / Rabe, J. P. / Frauenrath, H. et al. | 2008
- 409
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Molecular Level Control over Hierarchical Structure Formation and Polymerization of Oligopeptide-Polymer ConjugatesFNR HREF="fn1">FN ID="fn1">The authors would like to thank Prof. A. Dieter Schlüter (ETH Zurich, Switzerland) for invaluable discussions and generous support. Funding from Fonds der Chemischen Industrie (Fonds-Stipendium, E. Jahnke), Schweizerischer Nationalfonds (SNF-Projekt 200021-113509), and Deutsche Forschungsgemeinschaft (Sfb 448 "Mesoscopically Organized Composites" and Sfb 658 "Elementary Processes in Molecular Switches at Surfaces") is gratefully acknowledged. Supporting Information is available online from Wiley InterScience or from the authors.Jahnke, E. et al. | 2008
- 415
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A Semi‐transparent Plastic Solar Cell Fabricated by a Lamination ProcessHuang, J. / Li, G. / Yang, Y. et al. | 2008
- 415
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A Semi-transparent Plastic Solar Cell Fabricated by a Lamination ProcessFNR HREF="fn1">FN ID="fn1">This work is financially supported by Solarmer Energy, Inc., and the Air Force Office of Scientific Research.Huang, J. et al. | 2008
- 420
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Carbon Nanofibers "Spot-Welded" to Carbon Felt: A Mechanically Stable, Bulk Mimic of Lotus LeavesFNR HREF="fn1">FN ID="fn1">Financial support of this work through the National Science Foundation Nanoscale Interdisciplinary Research Team Grant No. CTS-0210366 is gratefully acknowledged. We also thank Prof. G. K. Jennings for assistance with water contact-angle measurements.Li, J. et al. | 2008
- 420
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Carbon Nanofibers “Spot‐Welded” to Carbon Felt: A Mechanically Stable, Bulk Mimic of Lotus LeavesLi, J. / Sambandam, S. / Lu, W. / Lukehart, C. M. et al. | 2008
- 425
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A 2D‐Rectangular p2gg Silica Mesoporous Crystal with Elliptical Mesopores: An Intermediate Phase of Chiral and Lamellar MesostructuresQiu, H. / Sakamoto, Y. / Terasaki, O. / Che, S. et al. | 2008
- 425
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A 2D-Rectangular p2gg Silica Mesoporous Crystal with Elliptical Mesopores: An Intermediate Phase of Chiral and Lamellar MesostructuresFNR HREF="fn1">FN ID="fn1">This work was supported by the National Natural Science Foundation of China (Grant Nos. 20425102 and 20521140450), the China Ministry of Education, and Shanghai Science Foundation (05XD14010). Financial support from both JST and VR (Y.S. and O.T.) is also acknowledged. Authors acknowledge Sam Stevens, University of Manchester, for critical reading. Supporting Information is available online from Wiley InterScience or from the author.Qiu, H. et al. | 2008
- 430
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Synthesis of Functionalized Au Nanoparticles for Protein DetectionJana, N. R. / Ying, J. Y. et al. | 2008
- 430
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Synthesis of Functionalized Au Nanoparticles for Protein DetectionFNR HREF="fn1">FN ID="fn1">The authors would like to thank Dr. S. T. Selvan for helpful discussion and Dr. Lan Zhao for TEM characterization. This work was supported by the Institute of Bioengineering and Nanotechnology (Biomedical Research Council, Agency for Science, Technology and Research, Singapore). Supporting information is available online from Wiley InterScience or from the author.Jana, N. R et al. | 2008
- 435
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Anisotropy in Organic Single‐Crystal Photovoltaic CharacteristicsTseng, R. J. / Chan, R. / Tung, V. C. / Yang, Y. et al. | 2008
- 435
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Anisotropy in Organic Single-Crystal Photovoltaic CharacteristicsFNR HREF="fn1">FN ID="fn1">We acknowledge the financial support from the National Science Foundation (NSF) and Air Force Office of Scientific Research (AFOSR). We also acknowledge helpful discussions from Alejandro Briseno and Prof. Zhenan Bao.Tseng, R. J et al. | 2008
- 439
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Porous Films from Transformation of Polymeric Sphere ArraysXue, M. J. / Xiao, W. T. / Zhang, Z. J. et al. | 2008
- 439
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Porous Films from Transformation of Polymeric Sphere ArraysFNR HREF="fn1">FN ID="fn1">This work was supported by the Grant 863 Program of China (2002AA302607).Xue, M. J et al. | 2008
- 443
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Nanocarbon Superhydrophobic Surfaces created from Fullerene-Based Hierarchical Supramolecular AssembliesFNR HREF="fn1">FN ID="fn1">This work was supported, in part, by a Grant-in Aid from the Ministry of Education, Sciences, Sports, and Culture, Japan and the Iketani Science and Technology Foundation. We thank Prof. T. Kunitake, RIKEN, for valuable discussions. Supporting Information is available online from Wiley InterScience or from the author.Nakanishi, T. et al. | 2008
- 443
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Nanocarbon Superhydrophobic Surfaces created from Fullerene‐Based Hierarchical Supramolecular AssembliesNakanishi, T. / Michinobu, T. / Yoshida, K. / Shirahata, N. / Ariga, K. / Möhwald, H. / Kurth, D. G. et al. | 2008
- 447
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Laterally Spaced Linear Nanoparticle Arrays Templated by Laminated β‐Sheet FibrilsLamm, M. S. / Sharma, N. / Rajagopal, K. / Beyer, F. L. / Schneider, J. P. / Pochan, D. J. et al. | 2008
- 447
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Laterally Spaced Linear Nanoparticle Arrays Templated by Laminated &bgr;-Sheet FibrilsFNR HREF="fn1">FN ID="fn1">M.S.L. and N.S. contributed equally to this work. The authors acknowledge financial support from the NSF IGERT fellowship DGE-0221651, NSF Career Award DMR-0348147, NSF Career Award CHE-0348323, DJP DuPont Young Faculty Award, and JPS DuPont Young Faculty Award. We acknowledge the W. M. Keck Foundation for partial funding of the College of Engineering Electron Microscopy Lab at the University of Delaware. Supporting Information is available online from Wiley InterScience or from the authors.Lamm, M. S et al. | 2008
- 447
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Laterally Spaced Linear Nanoparticle Arrays Templated by Laminated b-Sheet FibrilsLamm, M. S. / Sharma, N. / Rajagopal, K. / Beyer, F. L. / Schneider, J. P. / Pochan, D. J. et al. | 2008
- 452
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Controlled Preparation of MnO2 Hierarchical Hollow Nanostructures and Their Application in Water TreatmentFei, J. B. / Cui, Y. / Yan, X. H. / Qi, W. / Yang, Y. / Wang, K. W. / He, Q. / Li, J. B. et al. | 2008
- 452
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Controlled Preparation of MnO2 Hierarchical Hollow Nanostructures and Their Application in Water TreatmentFNR HREF="fn1">FN ID="fn1">We acknowledge the financial supports of this research by NNSFC (No. 20574077), the Chinese Academy of Sciences (No. Kjcx2-sw-h12, CMS-CX200610), as well as the collaborated project of German Max Planck Society. Supporting Information is available online from Wiley InterScience or from the authors.Fei, J. B et al. | 2008
- 457
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Carbon Nanotube Network Structuring Using Two‐Dimensional Colloidal Crystal TemplatesKim, M. H. / Choi, J.‐Y. / Choi, H. K. / Yoon, S.‐M. / Park, O. O. / Yi, D. K. / Choi, S. J. / Shin, H.‐J. et al. | 2008
- 457
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Carbon Nanotube Network Structuring Using Two-Dimensional Colloidal Crystal TemplatesFNR HREF="fn1">FN ID="fn1">M.H.K. and J.-Y.C. contributed equally to this work. Supporting Information is available online from Wiley InterScience or from the authors.Kim, M. H et al. | 2008
- 462
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Helical Crystals with a Sixfold Screw AxisWang, X. / Lu, Y. / Duan, Y. / Meng, L. / Li, C. et al. | 2008
- 462
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Helical Crystals with a Sixfold Screw AxisFNR HREF="fn1">FN ID="fn1">This project was supported by the National Natural Science Foundation of China (50703018, 20604018), the Scientific Developing Foundation of Tianjin Education Commission (20050520), and the Outstanding Scholar Program of Nankai University. The authors thank X. X. Zhu and Hanying Zhao for critical reading of the manuscript, Pingchuan Sun, Wei Wang, Hongwei Sun, Ruifang Li, and Yanni Li for useful discussions, Haiyan Du and Yongzhe Che for the measurements, and Wenbin Wang for drawing the 3D images. Supporting Information is available online from Wiley InterScience or from the author.Wang, X. et al. | 2008
- 466
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DNA‐Wrapped Single‐Walled Carbon Nanotube Hybrid Fibers for supercapacitors and Artificial MusclesShin, S. R. / Lee, C. K. / So, I. S. / Jeon, J. H. / Kang, T. M. / Kee, C. W. / Kim, S. I. / Spinks, G. M. / Wallace, G. G. / Kim, S. J. et al. | 2008
- 466
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DNA-Wrapped Single-Walled Carbon Nanotube Hybrid Fibers for supercapacitors and Artificial MusclesFNR HREF="fn1">FN ID="fn1">This work was supported by Creative Research Initiative Center for Bio-Artificial Muscle of the Ministry of Science & Technology (MOST)-the Korea Science and Engineering Foundation (KOSEF) in Korea. Supporting Information is available online from Wiley InterScience or from the author.Shin, S. R et al. | 2008
- 471
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Molecular Self-Assembly, Chemical Lithography, and Biochemical Tweezers: A Path for the Fabrication of Functional Nanometer-Scale Protein ArraysFNR HREF="fn1">FN ID="fn1">The grant support of BMBF and DFG is acknowledged. Part of this work was performed at the Swiss Light Source, Paul Scherrer Institut, Villigen, Switzerland. Supporting Information is available online from Wiley InterScience or from the authors.Turchanin, A. et al. | 2008
- 471
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Molecular Self‐Assembly, Chemical Lithography, and Biochemical Tweezers: A Path for the Fabrication of Functional Nanometer‐Scale Protein ArraysTurchanin, A. / Tinazli, A. / El‐Desawy, M. / Großmann, H. / Schnietz, M. / Solak, H. H. / Tampé, R. / Gölzhäuser, A. et al. | 2008
- 478
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Designed Fabrication of a Multifunctional Polymer Nanomedical Platform for Simultaneous Cancer‐ Targeted Imaging and Magnetically Guided Drug DeliveryKim, J. / Lee, J. E. / Lee, S. H. / Yu, J. H. / Lee, J. H. / Park, T. G. / Hyeon, T. et al. | 2008
- 478
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Designed Fabrication of a Multifunctional Polymer Nanomedical Platform for Simultaneous Cancer- Targeted Imaging and Magnetically Guided Drug DeliveryFNR HREF="fn1">FN ID="fn1">T.H. thanks the Korean Ministry of Science and Technology for financial support through the National Creative Research Initiative Program of the Korea Science and Engineering Foundation (KOSEF). T.G.P. is supported by the National Research Laboratory Grant from the Ministry of Science and Technology. J.H.L. is supported by the Center for Biological Modulators of the 21st Century Frontier R&D Program. Supporting Information is available online from Wiley InterScience or from the authors.Kim, J. et al. | 2008
- 484
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Tunable Arrays of C60 Molecular ChainsChen, L. / Chen, W. / Huang, H. / Zhang, H. L. / Yuhara, J. / Wee, A. T. S. et al. | 2008
- 484
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Tunable Arrays of C60 Molecular ChainsFNR HREF="fn1">FN ID="fn1">Supported by A*STAR grant R-398-000-036-305, NUS ARF grant R-144-000-196-112 and JSPS Bilateral Joint Projects of R-144-000-187-123 and R-144-000-187-101. Dr. W. Chen acknowledges the financial support from LKY PDF fellowship.Chen, L. et al. | 2008
- 489
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Nanoscale Patterning and Electronics on Flexible Substrate by Direct Nanoimprinting of Metallic NanoparticlesPark, I. / Ko, S. H. / Pan, H. / Grigoropoulos, C. P. / Pisano, A. P. / Fréchet, J. M. J. / Lee, E.‐S. / Jeong, J.‐H. et al. | 2008
- 489
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Nanoscale Patterning and Electronics on Flexible Substrate by Direct Nanoimprinting of Metallic NanoparticlesFNR HREF="fn1">FN ID="fn1">I.P. and S.H.K. equally contributed to this work. The authors appreciate Prof. C. Luscombe (University of Washington) for providing semiconducting polymer material. Financial support to the University of California, Berkeley, by the Center for Nanoscale Mechatronics and Manufacturing(CNMM) (Grant No. 019997), one of the 21st Century Frontier Research Programs from the Ministry of Science and Technology, Republic of Korea, U.S. National Science Foundation (grant nos. CTS-0417563 and CMMI 0700827), and the U.S. Department of Energy (DE-AC03-76SF00098) is gratefully acknowledged.Park, I. et al. | 2008
- 497
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Enzyme‐Based Multi‐Component Optical Nanoprobes for Sequence‐ Specific Detection of DNA HybridizationLi, J. / Song, S. / Liu, X. / Wang, L. / Pan, D. / Huang, Q. / Zhao, Y. / Fan, C. et al. | 2008
- 497
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Enzyme-Based Multi-Component Optical Nanoprobes for Sequence- Specific Detection of DNA HybridizationFNR HREF="fn1">FN ID="fn1">This work was supported by National Natural Science Foundation (60537030, 30571174 and 20404016), Shanghai Municipal Commission for Science and Technology (0652nm006, 0652nm016, and 06ZR14106), National Basic Research Program of China (2006CB933000, 2007CB936000), Shanghai Rising-Star Program and Chinese Academy of Sciences. Supporting Information is available online from Wiley InterScience or from the authors.Li, J. et al. | 2008
- 501
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Enhanced Potential of Amorphous Electrode Materials: Case Study of RuO2Delmer, O. / Balaya, P. / Kienle, L. / Maier, J. et al. | 2008
- 501
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Enhanced Potential of Amorphous Electrode Materials: Case Study of RuO2 FNR HREF="fn1">FN ID="fn1">The authors thank V. Duppel for recording the SAED patterns and HRTEM micrographs, A. Fuchs for providing SEM micrographs, and G. Götz for XRD analysis. Helpful discussions within the ALISTORE network are also acknowledged.Delmer, O. et al. | 2008
- 506
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Nanorods as Wavelength‐Selective Absorption Centers in the Visible and Near‐Infrared Regions of the Electromagnetic SpectrumSkirtach, A. G. / Karageorgiev, P. / De Geest, B. G. / Pazos‐Perez, N. / Braun, D. / Sukhorukov, G. B. et al. | 2008
- 506
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Nanorods as Wavelength-Selective Absorption Centers in the Visible and Near-Infrared Regions of the Electromagnetic SpectrumFNR HREF="fn1">FN ID="fn1">We gratefully acknowledge Prof. H. Möhwald for discussions and support of this research. We also thank Rona Pitschke for transmission electron microscopy imaging and Annegret Praast for technical assistance. This work has been supported by the 6th FP EU-project STREP-NMP3-CT-2005-516 922 "SelectNANO" and the Volkswagen Foundation (I-80 051-054). We also thank the Emmy Noether Program of the Deutsche Forschungsgemeinschaft (D.B.) for support and Ghent University for a BOF scholarship (B.G.D.G.).Skirtach, A. G et al. | 2008
- 511
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Enhanced Optical Limiting Effects in Porphyrin‐Covalently Functionalized Single‐Walled Carbon NanotubesLiu, Z.‐B. / Tian, J.‐G. / Guo, Z. / Ren, D.‐M. / Du, F. / Zheng, J.‐Y. / Chen, Y.‐S. et al. | 2008
- 511
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Enhanced Optical Limiting Effects in Porphyrin-Covalently Functionalized Single-Walled Carbon NanotubesFNR HREF="fn1">FN ID="fn1">This work was supported by the Natural Science Foundation of China (10574075, 60708020, and 20421202), the Chinese National Key Basic Research Special Fund (2006CB921703), the 973 Program (2006CB932900) and the Program for Changjiang Scholars and Innovative Research Team in University.Liu, Z.-B. et al. | 2008
- 516
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Photo-Triggered Surface Relief Grating Formation in Supramolecular Liquid Crystalline Polymer Systems with Detachable Azobenzene UnitFNR HREF="fn1">FN ID="fn1">This work was supported by JSPS Grant-In-Aid for Scientific Research A (16205019 to TS), and MEXT Scientific Research for Priority Areas (No. 446 to SN), and the CREST program of Japan Science and Technology Corporation (JST). N. Z. and N. M. were partially supported by a research fellowship from JSPS.Zettsu, N. et al. | 2008
- 516
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Photo‐Triggered Surface Relief Grating Formation in Supramolecular Liquid Crystalline Polymer Systems with Detachable Azobenzene UnitZettsu, N. / Ogasawara, T. / Mizoshita, N. / Nagano, S. / Seki, T. et al. | 2008
- 516
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Photo-triggered surface relief grating formation in supramolecular liquid crystalline polymer systems with detachable azobenzene unitsZettsu, Nobuyuki / Ogasawara, Toshinobu / Mizoshita, Norihiro / Nagano, Shusaku / Seki, Takahiro et al. | 2008
- 522
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Hierarchical Ordering of Block Copolymer Nanostructures by Solvent Annealing Combined with Controlled DewettingKim, T. H. / Hwang, J. / Hwang, W. S. / Huh, J. / Kim, H.‐C. / Kim, S. H. / Hong, J. M. / Thomas, E. L. / Park, C. et al. | 2008
- 522
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Hierarchical Ordering of Block Copolymer Nanostructures by Solvent Annealing Combined with Controlled DewettingFNR HREF="fn1">FN ID="fn1">This work was supported by the Korea Research Foundation Grant funded by the Korean Government. (MOEHRD; KRF-2005-042-D00110), Ministry of Commerce, Industry and Energy(MOCEI) through the 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 and the 0.1 Terabit Non-volatile Memory Development and Seoul Research and Business Development Program (10701 and 10816). The X-ray experiments at PAL (4C2 beamline), Korea were supported by MOST and POSCO, Korea. This work was supported by the Second Stage of Brain Korea 21 Project in 2006 and by the Seoul Science Fellowship. Supporting Information is available online from Wiley InterScience or from the authors.Kim, T. H et al. | 2008
- 528
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Imaging the Interfaces of Conjugated Polymer Optoelectronic DevicesSteuerman, D. W. / Garcia, A. / Dante, M. / Yang, R. / Löfvander, J. P. / Nguyen, T.‐Q. et al. | 2008
- 528
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Imaging the Interfaces of Conjugated Polymer Optoelectronic DevicesFNR HREF="fn1">FN ID="fn1">The authors thank Dr. Tom Mates for his guidance with SIMS measurements and the Mitsubishi Chemical Center for Advanced Materials, the Office of Naval Research Young Investigator Award, and the National Science Foundation CAREER Award (DMR# 0547639) for financial support.Steuerman, D. W et al. | 2008
- 535
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Controlled Loading of Nanoparticles into Submicrometer HolesMirin, N. A. / Hainey, M. Jr. / Halas, N. J. et al. | 2008
- 535
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Controlled Loading of Nanoparticles into Submicrometer HolesFNR HREF="fn1">FN ID="fn1">The authors wish to thank Prof. E. Zubarev and Prof. P. Nordlander for useful discussions. This work is supported by the Air Force Office of Scientific Research Grant F49620-03-C-0068, the National Science Foundation (NSF) Grant EEC-0304097 and ECS-0421108, the Texas Institute for Bio-Nano Materials and Structures for Aerospace Vehicles funded by NASA Cooperative Agreement No. NCC-1-02038, the Robert A. Welch Foundation Grant C-1220, and the Multidisciplinary University Research Initiative (MURI) Grant W911NF-04-01-0203.Mirin, N. A et al. | 2008
- 539
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Bifunctional Heterogeneous Catalysts for Selective Epoxidation and Visible Light Driven Photolysis: Nickel Oxide‐Containing Porous NanocompositeKim, T. W. / Hwang, S.‐J. / Jhung, S. H. / Chang, J.‐S. / Park, H. / Choi, W. / Choy, J. H. et al. | 2008
- 539
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Bifunctional Heterogeneous Catalysts for Selective Epoxidation and Visible Light Driven Photolysis: Nickel Oxide-Containing Porous NanocompositeFNR HREF="fn1">FN ID="fn1">This work was performed for the Hydrogen Energy R&D Center, one of the 21st Century Frontier R&D Program, funded by the Ministry of Science and Technology of Korea and partly supported by the SRC-ERC program of the MOST-KOSEF (grant: R11-2005-008-03002-0). The experiments at Pohang Accelerator Laboratory (PAL) were supported in part by MOST and POSTECH. Dr. J. S. Chang acknowledges the financial support by the Research Center for Nanocatalysts of the MOCIE and thanks Mr. Jin Ho Lee for his experimental assistance.Kim, T. W et al. | 2008
- 543
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Organic Electro‐optic Single‐ Crystalline Thin Films Grown Directly on Modified Amorphous SubstratesKwon, O‐P. / Kwon, S.‐J. / Figi, H. / Jazbinsek, M. / Günter, P. et al. | 2008
- 543
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Organic Electro-optic Single- Crystalline Thin Films Grown Directly on Modified Amorphous SubstratesFNR HREF="fn1">FN ID="fn1">This work has been supported by the Swiss National Science Foundation. Supporting Information is available online from Wiley InterScience or from the author.Kwon, O.-P. et al. | 2008
- 546
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High-Surface-Area Mesoporous Germanium from Oxidative Polymerization of the Deltahedral [Ge9]4- Cluster: Electronic Structure Modulation with Donor and Acceptor MoleculesFNR HREF="fn1">FN ID="fn1">This work was supported by NSF. We thank K. Chapman and P. Chupas (ANL) for help with the handling the PDF data. Supporting Information is available online from Wiley Interscience or from the authorsArmatas, G. S et al. | 2008
- 551
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Colossal Permittivity in Ultrafine Grain Size BaTiO3–x and Ba0.95La0.05TiO3–x MaterialsGuillemet‐Fritsch, S. / Valdez‐Nava, Z. / Tenailleau, C. / Lebey, T. / Durand, B. / Chane‐Ching, J.‐Y. et al. | 2008
- 551
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Colossal Permittivity in Ultrafine Grain Size BaTiO3-x and Ba0.95La0.05TiO3-x MaterialsFNR HREF="fn1">FN ID="fn1">We thank G. Raimbeaux, C. Estournes for assistance on SPS sintering, performed at the PNF2-CNRS of Toulouse and C. Calmet for FEG-SEM micrographs. This work was supported by a Scientific Research Grant from the Ministry of Research of France.Guillemet-Fritsch, S. et al. | 2008
- 556
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Unprecedented Room‐Temperature Electrical Power Generation Using Nanoscale Fluorite‐Structured Oxide ElectrolytesKim, S. / Anselmi‐Tamburini, U. / Park, H. J. / Martin, M. / Munir, Z. A. et al. | 2008
- 556
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Unprecedented Room-Temperature Electrical Power Generation Using Nanoscale Fluorite-Structured Oxide ElectrolytesFNR HREF="fn1">FN ID="fn1">S. K. and U. A.-T. contributed equally to this work.This work was partially supported by the National Science Foundation (Z. A. M.). We thank R. A. De Souza and M. Pietrowski for performing the SIMS analysis and Professor Filippo Maglia for helpful contributions to this research.Kim, S. et al. | 2008
- 560
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Polyelectrolyte Coatings with a Potential for Electronic Control and Cell Sheet EngineeringGuillaume‐Gentil, O. / Akiyama, Y. / Schuler, M. / Tang, C. / Textor, M. / Yamato, M. / Okano, T. / Vörös, J. et al. | 2008
- 560
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Polyelectrolyte Coatings with a Potential for Electronic Control and Cell Sheet EngineeringFNR HREF="fn1">FN ID="fn1">This work was supported by the Roche Research Foundation (Mkl-stm 39-2005), the Competence Centre for Materials Science and Technology, and the Germaine de Staël program for Franco-Swiss collaboration. Prof. P. Schaaf (Institut Charles Sadron, Strasbourg, France), Dr. J. C. Voegel (INSERM, Strasbourg, France), and the members of their groups are acknowledged for valuable discussions. We thank M. Elsener (Laboratory of Surface Science and Technology, ETH Zurich) for the fabrication of the PEEK flow cell, and J. Steinhauser (Institute of Microtechnology, University of Neuchâtel, Switzerland) for his assistance with ITO sputter-coating. Supporting Information is available online from Wiley InterScience or from the authors.Guillaume-Gentil, O. et al. | 2008
- 566
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Direct Growth of Flexible Carbon Nanotube ElectrodesChen, J. / Minett, A. I. / Liu, Y. / Lynam, C. / Sherrell, P. / Wang, C. / Wallace, G. G. et al. | 2008
- 566
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Direct Growth of Flexible Carbon Nanotube ElectrodesFNR HREF="fn1">FN ID="fn1">We thank the Australian Research Council for continued financial support, and Jon Lai and Lam Vuong from Atomate USA for helpful discussions regarding the Atomate Thermal CVD. Supporting Information is available online from Wiley InterScience or from the author.Chen, J. et al. | 2008
- 571
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Template‐ and Surfactant‐free Room Temperature Synthesis of Self‐Assembled 3D Pt Nanoflowers from Single‐Crystal NanowiresSun, S. H. / Yang, D. Q. / Villers, D. / Zhang, G. X. / Sacher, E. / Dodelet, J. P. et al. | 2008
- 571
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Template- and Surfactant-free Room Temperature Synthesis of Self-Assembled 3D Pt Nanoflowers from Single-Crystal NanowiresFNR HREF="fn1">FN ID="fn1">This work is supported by General Motors of Canada and NSERC. The authors thank Mr. Jean-Philippe Masse at École Polytechnique for his help at TEM facility. Supporting Information is available online from Wiley InterScience or from the authors.Sun, S. H et al. | 2008
- 575
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Can Supercritical Carbon Dioxide Improve the Mechanical Integrity of Ultrahigh-Molecular-Weight Polyethylene?FNR HREF="fn1">FN ID="fn1">We acknowledge the EPSRC for funding (A.N.) and Royal Society for Russia-UK Joint Project Grant. We thank Mr. P. Fields and Mr. R. Wilson for their technical assistance. We also acknowledge the School of Mechanical, Materials and Manufacturing Engineering for their assistance with the mechanical measurement. S.M.H. is a Royal Society - Wolfson Research Merit Award Holder. Supporting Information is available online from Wiley InterScience or from the author.Naylor, A. et al. | 2008
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Can Supercritical Carbon Dioxide Improve the Mechanical Integrity of Ultrahigh‐Molecular‐Weight Polyethylene?Naylor, A. / Timashev, P. S. / Solov'eva, A. B. / Erina, N. A. / Kotova, S. / Busby, A. J. / Popov, V. K. / Howdle, S. M. et al. | 2008
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Design Rules for Donors in Bulk‐Heterojunction Tandem Solar CellsTowards 15 % Energy‐Conversion EfficiencyDennler, G. / Scharber, M. C. / Ameri, T. / Denk, P. / Forberich, K. / Waldauf, C. / Brabec, C. J. et al. | 2008
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Design Rules for Donors in Bulk-Heterojunction Tandem Solar Cells?Towards 15 % Energy-Conversion EfficiencyFNR HREF="fn1">FN ID="fn1">The authors gratefully acknowledge the financial support of the European Commission R&D Programme (N2T2 Project, Contract No: STREP-NMP-017481) and of the Austrian Foundation for the Advancement of Science (FWF).Dennler, G. et al. | 2008
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Periodic Distribution of Planar Defects in Colloidal Photonic CrystalsMassé, P. / Pouclet, G. / Ravaine, S. et al. | 2008
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Periodic Distribution of Planar Defects in Colloidal Photonic CrystalsFNR HREF="fn1">FN ID="fn1">We thank S. Reculusa for useful discussions, B. Agricole and E. Sellier for Langmuir-Blodgett and SEM experiments, respectively.Massé, P. et al. | 2008
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Growth of Gold Tips onto Hyperbranched CdTe NanostructuresFNR HREF="fn1">FN ID="fn1">We acknowledge helpful discussions with Andreas Henkel, Tatjana Gorelik, and Michaela Wagner and financial support from the German Science Foundation (DFG) through SFB 625 and the European Union under the NanoSci-ERA program. Supporting Information is available online from Wiley InterScience or from the author.Khalavka, Y. et al. | 2008
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Growth of Gold Tips onto Hyperbranched CdTe NanostructuresKhalavka, Y. / Sönnichsen, C. et al. | 2008
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Wire‐Shaped Flexible Dye‐sensitized Solar CellsFan, X. / Chu, Z. Z. / Wang, F. Z. / Zhang, C. / Chen, L. / Tang, Y. W. / Zou, D. C. et al. | 2008
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Wire-Shaped Flexible Dye-sensitized Solar CellsFNR HREF="fn1">FN ID="fn1">This research was supported by the NSF and 973 programs of the People's Republic of China, under Grant Nos. 90401028, 50673003, and 2002CB613405.Fan, X. et al. | 2008
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Well-Positioned Metallic Nanostructures Fabricated by Nanotransfer Edge PrintingFNR HREF="fn1">FN ID="fn1">This research was supported by NSF of China under No. 20674096, 20733001, and 50773092.Xue, M. Q et al. | 2008
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Well‐Positioned Metallic Nanostructures Fabricated by Nanotransfer Edge PrintingXue, M. Q. / Yang, Y. L. / Cao, T. B. et al. | 2008
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Motor Protein CF0F1 Reconstituted in Lipid-Coated Hemoglobin Microcapsules for ATP SynthesisFNR HREF="fn1">FN ID="fn1">This work was financially supported by the National Nature Science Foundation of China (project nos. 90 206 035 and 20 520 130 213), National Basic Research Program of China (973 program) project no. 2007CB 935 900, and the Chinese Academy of Sciences (kjcx2-sw-h12), as well as by a collaboration with the German Max Planck Society.Qi, W. et al. | 2008
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Motor Protein CF0F1 Reconstituted in Lipid‐Coated Hemoglobin Microcapsules for ATP SynthesisQi, W. / Duan, L. / Wang, K. W. / Yan, X. H. / Cui, Y. / He, Q. / Li, J. et al. | 2008
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Thermally Stable Organic-Inorganic Hybrid Photoresists for Fabrication of Photonic Band Gap Structures with Direct Laser WritingFNR HREF="fn1">FN ID="fn1">This work was supported by the US National Science Foundation under Award Number CTS-0332484 and by the US Department of Energy under Award Number DE-FG02-06ER46348. D.J.N. benefited from a fellowship from the Alexander von Humboldt Foundation. The authors thank J. Sedgewick and J. Oja for microscopy assistance.Jun, Y. et al. | 2008
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Thermally Stable Organic–Inorganic Hybrid Photoresists for Fabrication of Photonic Band Gap Structures with Direct Laser WritingJun, Y. / Nagpal, P. / Norris, D. J. et al. | 2008
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Organic Field‐Effect Transistors with a Low Pinch‐Off Voltage and a Controllable Threshold VoltageWang, Y. / Liu, Y. Q. / Song, Y. B. / Ye, S. H. / Wu, W. P. / Guo, Y. L. / Di, C. A. / Sun, Y. M. / Yu, G. / Hu, W. P. et al. | 2008
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Organic Field-Effect Transistors with a Low Pinch-Off Voltage and a Controllable Threshold VoltageFNR HREF="fn1">FN ID="fn1">This work is supported by the National Natural Science Foundation of China (20573115, 90206049, 20472089, 20421101, 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 or from the author.Wang, Y. et al. | 2008
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Sonochemical Optimization of the Conductivity of Single Wall Carbon Nanotube NetworksKaempgen, M. / Lebert, M. / Haluska, M. / Nicoloso, N. / Roth, S. et al. | 2008
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Sonochemical Optimization of the Conductivity of Single Wall Carbon Nanotube NetworksFNR HREF="fn1">FN ID="fn1">We thank Erika Artukovic for many helpful discussions.Kaempgen, M. et al. | 2008
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Fault‐Tolerant Dielectric Elastomer Actuators using Single‐Walled Carbon Nanotube ElectrodesYuan, W. / Hu, L. B. / Yu, Z. B. / Lam, T. / Biggs, J. / Ha, S. M. / Xi, D. J. / Chen, B. / Senesky, M. K. / Grüner, G. et al. | 2008
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Fault-Tolerant Dielectric Elastomer Actuators using Single-Walled Carbon Nanotube ElectrodesFNR HREF="fn1">FN ID="fn1">This material is based upon work supported by the National Science Foundation under Grant No. 0507294 and DMR-0404029.Yuan, W. et al. | 2008
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Scope and Applications of Amphiphilic Alkyl‐ and LipopeptidesCavalli, S. / Kros, A. et al. | 2008
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Author Index and Subject Index Adv. Mater. 3/2008| 2008
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Cover Picture: Direct Growth of Flexible Carbon Nanotube Electrodes (Adv. Mater. 3/2008)Chen, J. / Minett, A. I. / Liu, Y. / Lynam, C. / Sherrell, P. / Wang, C. / Wallace, G. G. et al. | 2008
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Inside Front Cover: Enzyme‐Based Multi‐Component Optical Nanoprobes for Sequence‐Specific Detection of DNA Hybridization (Adv. Mater. 3/2008)Li, J. / Song, S. / Liu, X. / Wang, L. / Pan, D. / Huang, Q. / Zhao, Y. / Fan, C. et al. | 2008