ADVANCED FUNCTIONAL MATERIALS
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Inhaltsverzeichnis
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Contents: Adv. Funct. Mater. 8/2007| 2007
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Mesoporous Silica Nanoparticles for Drug Delivery and Biosensing ApplicationsFNR HREF="fn1">FN ID="fn1">The authors thank the U.S. National Science Foundation (CHE-0239570) and the U.S. DOE Ames Laboratory (W-7405-Eng-82) for their support of the research.Slowing, I.& ;I et al. | 2007
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Mesoporous Silica Nanoparticles for Drug Delivery and Biosensing ApplicationsSlowing, I. I. / Trewyn, B. G. / Giri, S. et al. | 2007
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Polyarylene Networks via Bergman Cyclopolymerization of Bis‐ortho‐diynyl ArenesSmith, D. W. Jr. / Shah, H. V. / Perera, K. P. U. et al. | 2007
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Polyarylene Networks via Bergman Cyclopolymerization of Bis-ortho-diynyl ArenesFNR HREF="fn1">FN ID="fn1">Acknowledgment is made to the donors of The Petroleum Research Fund, administered by the ACS, National Science Foundation CAREER Award (DMR 9985160 and DMR 0514622), Army Research Office, and the National Textiles Center for financial support. We thank Clemson University and The Dow Chemical Company for support of this work, P. Townsend, V. Snelgrove, B. Seliskar, D. McCrery, J. Haung, and J. Godschalx of Dow for valued expertise, H. Beckham of the Georgia Inst. Tech. for solid state NMR data.Smith, D.& ;W et al. | 2007
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Photonic Crystals from Ordered Mesoporous Thin-Film Functional Building BlocksFNR HREF="fn1">FN ID="fn1">This work is protected under Spanish Patent P200602405, priority date September 22nd, 2006. This work has been realized in the framework of a joint Spanish-Argentinian cooperation project CSIC-CONICET (Grant AR2005-0078). The work is partially funded by aCONICET (PIP 5191, fellowship for M.C.F.), ANPCyT (Grants PICT 06-12057, PICT 06-12345), and Gabbos (PERiodically Organized Nanostructures project). The work is partially funded by the Spanish Ministry of Science and Education under grant MAT2004-03028. The 2D SAXS was funded by LNLS, Campinas, Brazil (D11A-SAS #4643-05 and 4785-05). Authors are indebted to Prof.& ;I.& ;Torriani and T.& ;Plivelic for assistance in SAXS, and to Centro de Microscop&̕as Avanzadas UBA, for access to the FESEM. G.J.A.A.S.I. and H.E.T. are members of CONICET. J.L.-A. thanks CSIC for a last year undergraduate scholarship.Fuertes, M.& ;C et al. | 2007
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Photonic Crystals from Ordered Mesoporous Thin‐Film Functional Building BlocksFuertes, M. C. / López‐Alcaraz, F. J. / Marchi, M. C. et al. | 2007
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Microporous Metal-Organic Frameworks with High Gas Sorption and Separation CapacityFNR HREF="fn1">FN ID="fn1">The financial support from the National Energy Technology Laboratory (DE-FC26-05NT42446) is gratefully acknowledged. Supporting Information is available online from Wiley InterScience or from the author.Lee, J.& ;Y et al. | 2007
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Microporous Metal–Organic Frameworks with High Gas Sorption and Separation CapacityLee, J. Y. / Olson, D. H. / Pan, L. et al. | 2007
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pH-Tunable Endosomolytic Oligomers for Enhanced Nucleic Acid DeliveryFNR HREF="fn1">FN ID="fn1">This work was partially supported by the National Institutes of Health (USA) (NIH& ;DK& ;56884).Kang, H.& ;C et al. | 2007
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pH‐Tunable Endosomolytic Oligomers for Enhanced Nucleic Acid DeliveryKang, H. C. / Bae, Y. H. et al. | 2007
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Encapsulation of Water-Immiscible Solvents in Polyglutamate- Polyelectrolyte NanocontainersFNR HREF="fn1">FN ID="fn1">X.T. is thankful to the China Scholarship Council for a research fellowship and to Dr. Oliver Kreft for kindly helping with the confocal microscopy measurements. We also thank Rona Pitschke for electron microscopy analysis. This work was supported by FP6 EU-project "NANOCAPSULE" and STREP-NMP3-CT-2006-033410 "MatSILC".Teng, X. et al. | 2007
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Encapsulation of Water‐Immiscible Solvents in Polyglutamate/ Polyelectrolyte NanocontainersTeng, X. / Shchukin, D. G. / Möhwald, H. et al. | 2007
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Solvent‐Mediated Plasmon Tuning in a Gold‐Nanoparticle–Poly(Ionic Liquid) CompositeBatra, D. / Seifert, S. / Varela, L. M. et al. | 2007
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Solvent-Mediated Plasmon Tuning in a Gold-Nanoparticle-Poly(Ionic Liquid) CompositeFNR HREF="fn1">FN ID="fn1">The authors acknowledge Dr.& ;Amanda& ;Barnard and Dr.& ;Urs& ;Geiser for assistance with rendering the POV-ray graphics. This work was performed under the auspices of the Office of Basic Energy Sciences, Division of Materials Sciences, United States Department of Energy, under contract No.& ;W-31-109-ENG-38. Supporting Information is available online from Wiley InterScience or from the author.Batra, D. et al. | 2007
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Aligned Protein-Polymer Composite Fibers Enhance Nerve Regeneration: A Potential Tissue-Engineering PlatformFNR HREF="fn1">FN ID="fn1">This work is supported by NIH (EB003447) and the Nanyang Technological University Overseas Scholarship. We would like to thank Dr.& ;Jie Wen for the provision of the PCLEEP polymer.Chew, S.& ;Y et al. | 2007
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Aligned Protein–Polymer Composite Fibers Enhance Nerve Regeneration: A Potential Tissue‐Engineering PlatformChew, S. Y. / Mi, R. / Hoke, A. et al. | 2007
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Device Operation of Conjugated Polymer/Zinc Oxide Bulk Heterojunction Solar CellsKoster, L. J. A. / van Strien, W. J. / Beek, W. J. E. et al. | 2007
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Device Operation of Conjugated Polymer-Zinc Oxide Bulk Heterojunction Solar CellsFNR HREF="fn1">FN ID="fn1">The authors are indebted to J. Sweelssen (TNO Science and Industry) for a generous supply of MDMO-PPV. Furthermore, Dr. M. M. Wienk and Prof. Dr.& ;R.& ;A.& ;J. Janssen are acknowledged for useful discussions. One of the authors (L.J.A.K.) wishes to thank J. Wildeman for technical assistance. The work of this author forms part of the research program of the Dutch Polymer Institute (No. 323).Koster, L.& ;J & ;A et al. | 2007
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Hierarchical Shelled ZnO Structures Made of Bunched Nanowire ArraysFNR HREF="fn1">FN ID="fn1">The work was financially supported by the Scientific Research Foundation for the Returned Overseas Chinese Scholars, State Education Ministry, the National Natural Science Foundation of China (NSFC90406024), "863" and "973" National Key Basic Research Project (2005CB724700). The Cooperation Lab of the National Center for Nanoscience and Technology also provided support.Jiang, P. et al. | 2007
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Hierarchical Shelled ZnO Structures Made of Bunched Nanowire ArraysJiang, P. / Zhou, J.‐J. / Fang, H.‐F. et al. | 2007
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Synthesis of Monodisperse FeAu Nanoparticles with Tunable Magnetic and Optical PropertiesFNR HREF="fn1">FN ID="fn1">We are grateful to the National Science Council of the Republic of China for the support of this research (contract No.& ;NSC 94-2214-E006-006). Supporting Information is available online from Wiley InterScience or from the author.Chiang, I.-C. et al. | 2007
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Synthesis of Monodisperse FeAu Nanoparticles with Tunable Magnetic and Optical PropertiesChiang, I‐C. / Chen, D.‐H. et al. | 2007
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Magnetic and Temperature‐Sensitive Release Gels from Supramolecular PolymersBinder, W. H. / Petraru, L. / Roth, T. et al. | 2007
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Magnetic and Temperature-Sensitive Release Gels from Supramolecular PolymersFNR HREF="fn1">FN ID="fn1">We are thankful for grant FWF 18740 B03, for the support by the Austrian-Hungarian Intergovernmental Cooperation (A-16-03), and by the Hungarian Scientific Research Fund (OTKA T46759 and IN64295). Furthermore, we thank Prof.& ;Nicola H&sing (University of Ulm) for SQUID measurements.Binder, W.& ;H et al. | 2007
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Organic Tube/Rod Hybrid Nanofibers with Adjustable Segment Lengths by Bidirectional Template WettingKriha, O. / Zhao, L. / Pippel, E. et al. | 2007
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Organic Tube-Rod Hybrid Nanofibers with Adjustable Segment Lengths by Bidirectional Template WettingFNR HREF="fn1">FN ID="fn1">The authors thank the Deutsche Forschungsgemeinschaft for funding this work in the framework of the priority program SPP 1165 "Nanowires and Nanotubes", S. Grimm and K. Sklarek for template preparation, as well as R. M&̱hner for the preparation of the TEM specimens.Kriha, O. et al. | 2007
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Ferroelectric and Ferromagnetic Behavior of Pb(Zr0.52Ti0.48)O3–Co0.9Zn0.1Fe2O4 Multilayered Thin Films Prepared via Solution ProcessingHe, H.‐C. / Wang, J. / Zhou, J.‐P. et al. | 2007
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Ferroelectric and Ferromagnetic Behavior of Pb(Zr0.52Ti0.48)O3-Co0.9Zn0.1Fe2O4 Multilayered Thin Films Prepared via Solution ProcessingFNR HREF="fn1">FN ID="fn1">This work was supported by the State Key Project of Fundamental Research of China (Grant No. 2002CB613303) and the NSF of China (Grant No. 50318002, 50621201, and 10574078).He, H.-C. et al. | 2007
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Surface‐Transfer Doping of Organic Semiconductors Using Functionalized Self‐Assembled MonolayersChen, W. / Gao, X. Y. / Qi, D. C. et al. | 2007
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Surface-Transfer Doping of Organic Semiconductors Using Functionalized Self-Assembled MonolayersFNR HREF="fn1">FN ID="fn1">We acknowledge the support from A*STAR R-398-000-036-305 grant.Chen, W. et al. | 2007
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ZnO Nanotetrapods: Controlled Vapor‐Phase Synthesis and Application for Humidity SensingQiu, Y. / Yang, S. et al. | 2007
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ZnO Nanotetrapods: Controlled Vapor-Phase Synthesis and Application for Humidity SensingFNR HREF="fn1">FN ID="fn1">We acknowledge supports from the Hong Kong University of Science and Technology (HIA05-06.SC02) and NNSFC-RGC administrated by the UGC of Hong Kong (N_HKUST604-04). Supporting Information is available online from Wiley InterScience or from the author.Qiu, Y. et al. | 2007
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One-Step Synthesis of Ru(2,2prime-Bipyridine)3Cl2-Immobilized Silica Nanoparticles for Use in Electrogenerated Chemiluminescence DetectionQian, L. / Yang, X. R. et al. | 2007
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One-Step Synthesis of Ru(2,2'-Bipyridine)3Cl2-Immobilized Silica Nanoparticles for Use in Electrogenerated Chemiluminescence DetectionFNR HREF="fn1">FN ID="fn1">The authors thank the National Natural Science Foundation of China (No. 20475052 and 20335040) and the National Key Basic Research Development Project Research on Human Major Disease Proteomics (No. 2001CB5102) for financial support of this research.Qian, L. et al. | 2007
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One‐Step Synthesis of Ru(2,2′‐Bipyridine)3Cl2‐Immobilized Silica Nanoparticles for Use in Electrogenerated Chemiluminescence DetectionQian, L. / Yang, X.‐R. et al. | 2007
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Photo‐ and Rubbing‐Alignable Brush Polyimides Bearing Three Different ChromophoresHahm, S. G. / Lee, T. J. / Ree, M. et al. | 2007
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Photo- and Rubbing-Alignable Brush Polyimides Bearing Three Different ChromophoresFNR HREF="fn1">FN ID="fn1">This study was supported by the Korea Science & Engineering Foundation (National Research Lab and SRC Programs) and by the Ministry of Education (BK21 Program).Hahm, S.& ;G et al. | 2007
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Polyterthiophenes as Donors for Polymer Solar CellsFNR HREF="fn1">FN ID="fn1">The authors (at Konarka) acknowledge the European Commission for funding from the Molycell project. Further, the authors gratefully acknowledge support from TU Ilmenau (T. Erb and G. Gobsch) for support with X-Ray investigations.Koppe, M. et al. | 2007
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Polyterthiophenes as Donors for Polymer Solar CellsKoppe, M. / Scharber, M. / Brabec, C. et al. | 2007
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Poly(3-hexylthiophene) Fibers for Photovoltaic ApplicationsFNR HREF="fn1">FN ID="fn1">We are grateful to Patrice& ;Rannou, David& ;Djurado, and Violaine& ;Salvador for their assistance with SEC analysis, X-ray diffraction measurements, and SEM analysis, respectively. We also acknowledge Muriel& ;Firon for fruitful discussions. Supporting Information is available online from Wiley InterScience or from the author.Berson, S. et al. | 2007
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Poly(3‐hexylthiophene) Fibers for Photovoltaic ApplicationsBerson, S. / De Bettignies, R. / Bailly, S. et al. | 2007
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Structure–Property–Function Relationships in Nanoscale Oxide Sensors: A Case Study Based on Zinc OxidePolarz, S. / Roy, A. / Lehmann, M. et al. | 2007
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Structure-Property-Function Relationships in Nanoscale Oxide Sensors: A Case Study Based on Zinc OxideFNR HREF="fn1">FN ID="fn1">We thank the Deutsche Forschungsgemeinschaft (Emmy-Noether scholarship, SPP 1119) for financial support. Dr.& ;E.& ;Bill and Prof.& ;K.& ;Wieghardt are gratefully acknowledged for measuring EPR spectra. The possibility and support for using the spherical-aberration-corrected FEI Tecnai& ;F20 transmission electron microscope in the workgroup of Prof.& ;Hannes Lichte at the Triebenberg Lab of the TU Dresden is gratefully acknowledged. Supporting Information is available online from Wiley InterScience or from the author.Polarz, S. et al. | 2007
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Carbon-Decorated FePt NanoparticlesFNR HREF="fn1">FN ID="fn1">This work was supported by EPSRC and Johnson Matthey (J.M., UK). We thank J.M. for providing chemical analysis services for some of our samples. N.C. would like to acknowledge his Ph.D. studentship from J.M.Caiulo, N. et al. | 2007
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Carbon‐Decorated FePt NanoparticlesCaiulo, N. / Yu, C. H. / Yu, K. M. K. et al. | 2007
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Nanometer-Sized Copper Sulfide Hollow Spheres with Strong Optical-Limiting PropertiesFNR HREF="fn1">FN ID="fn1">This work was supported by the National Natural Science Foundation of China (Grant No. 20471007 and 10204003).Yu, X.-L. et al. | 2007
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Nanometer‐Sized Copper Sulfide Hollow Spheres with Strong Optical‐Limiting PropertiesYu, X.‐L. / Cao, C.‐B. / Zhu, H.‐S. et al. | 2007
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A Rapid and Efficient Method to Deposit Gold Particles onto Catalyst Supports and Its Application for CO Oxidation at Low TemperaturesFNR HREF="fn1">FN ID="fn1">This research was supported by the Agency for Science, Technology, and Research in Singapore (A-STAR, ICES03-414002). Z.Z. thanks Gary Ng, Suriya Subramanian, Vivien Ng, Zhan Wang, and Weiqiang Lim for technical assistance, and Dr.& ;Keith Carpenter and Dr.& ;P.& ;K. Wong for their kind support to this project. Supporting Information is available online from Wiley InterScience or from the authors.Zhong, Z. et al. | 2007
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A Rapid and Efficient Method to Deposit Gold Particles onto Catalyst Supports and Its Application for CO Oxidation at Low TemperaturesZhong, Z. / Lin, J. / Teh, S.‐P. et al. | 2007
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Biopolymer Networks for the Solid-State Production of Porous Magnetic Beads and WiresFNR HREF="fn1">FN ID="fn1">Supporting Information is available online from Wiley InterScience or from the author.Bakandritsos, A. et al. | 2007
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Biopolymer Networks for the Solid‐State Production of Porous Magnetic Beads and WiresBakandritsos, A. / Bourlinos, A. B. / Tzitzios, V. et al. | 2007
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Bacteriorhodopsin-Monolayer-Based Planar Metal-Insulator-Metal Junctions via Biomimetic Vesicle Fusion: Preparation, Characterization, and Bio-optoelectronic CharacteristicsFNR HREF="fn1">FN ID="fn1">The authors acknowledge support from the Wolfson Advanced Research Centre for Bio-microtechnology, the Kimmel Centre for Nanoscale Science, the Ilse Katz Institute for Materials Sciences, the Grand Centre for Sensors and Security, and the A.M.N. Fund for the promotion of Science, Culture, and Arts in Israel (all at the WIS) and from the Israel Ministry of Science's Tashtyoth program. Y.D.J thanks the Norman Sosnow foundation and the Feinberg Graduate School of the Weizmann Institute for post-doctoral fellowships. D.C. holds the Shaefer Chair of Energy Research, and M.S. the Katzir-Makineni Chair of Chemistry.Jin, Y.& ;D et al. | 2007
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Bacteriorhodopsin‐Monolayer‐Based Planar Metal–Insulator–Metal Junctions via Biomimetic Vesicle Fusion: Preparation, Characterization, and Bio‐optoelectronic CharacteristicsJin, Y. D. / Friedman, N. / Sheves, M. et al. | 2007
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Author Index and Subject Index Adv. Funct. Mater. 8/2007| 2007
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Cover Picture: Encapsulation of Water‐Immiscible Solvents in Polyglutamate/ Polyelectrolyte Nanocontainers (Adv. Funct. Mater. 8/2007)Teng, X. / Shchukin, D. G. / Möhwald, H. et al. | 2007