Advanced Hydrogen‐Storage Materials Based on Sc‐, Ce‐, and Pr‐Doped NaAlH4 (English)
- New search for: Bogdanović, B.
- New search for: Felderhoff, M.
- New search for: Pommerin, A.
- New search for: Schüth, F.
- New search for: Spielkamp, N.
- New search for: Bogdanović, B.
- New search for: Felderhoff, M.
- New search for: Pommerin, A.
- New search for: Schüth, F.
- New search for: Spielkamp, N.
In:
Advanced Materials
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18
, 9
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1198-1201
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2006
- Article (Journal) / Electronic Resource
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Title:Advanced Hydrogen‐Storage Materials Based on Sc‐, Ce‐, and Pr‐Doped NaAlH4
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Contributors:Bogdanović, B. ( author ) / Felderhoff, M. ( author ) / Pommerin, A. ( author ) / Schüth, F. ( author ) / Spielkamp, N. ( author )
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Published in:Advanced Materials ; 18, 9 ; 1198-1201
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Publisher:
- New search for: WILEY‐VCH Verlag
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Publication date:2006-05-02
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Size:4 pages
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ISSN:
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DOI:
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Type of media:Article (Journal)
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Type of material:Electronic Resource
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Language:English
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Keywords:
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Source:
Table of contents – Volume 18, Issue 9
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. 9/2006| 2006
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Growing Metal Nanoparticles by Enzymes. This research is supported by the Israel Ministry of Science and by the German-Israeli Program (DIP).Willner, I. et al. | 2006
- 1109
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Growing Metal Nanoparticles by EnzymesWillner, I. / Baron, R. / Willner, B. et al. | 2006
- 1121
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Poly(3,4‐alkylenedioxypyrroles): The PXDOPs as Versatile Yet Underutilized Electroactive and Conducting PolymersWalczak, R. M. / Reynolds, J. R. et al. | 2006
- 1121
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Poly(3,4-alkylenedioxypyrroles): The PXDOPs as Versatile Yet Underutilized Electroactive and Conducting Polymers. We gratefully acknowledge National Science Foundation (INT-0339735) and the Air Force Office of Scientific Research (F49620-03-1-0091) for funding the initial XDOP chemistries developed in our laboratory.Walczak, R.M et al. | 2006
- 1133
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Biologically Active Protein Nanoarrays Generated Using Parallel Dip-Pen Nanolithography. C.A.M. acknowledges NSF, AFSOR, DARPA, and NIH for supporting this work. C.A.M. is grateful for a NIH Director's Pioneer Award. S.W.L and B.-K.O acknowledge Korea Research Foundation Grant funded by Korea Government for support of a postdoctoral fellowship (grant no. M01-2003-000-20278-0, M01-2003-000-20168-0). Supporting Information is available online from Wiley InterScience or from the author.Lee, S.W et al. | 2006
- 1133
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Biologically Active Protein Nanoarrays Generated Using Parallel Dip‐Pen NanolithographyLee, S. W. / Oh, B.‐K. / Sanedrin, R. G. / Salaita, K. / Fujigaya, T. / Mirkin, C. A. et al. | 2006
- 1137
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A Biocompatible Bottom‐Up Route for the Preparation of Hierarchical Biohybrid MaterialsGutiérrez, M. C. / Jobbágy, M. / Rapún, N. / Ferrer, M. L. / del Monte, F. et al. | 2006
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A Biocompatible Bottom-Up Route for the Preparation of Hierarchical Biohybrid Materials. This work was supported by the MAT2003-02718 and 200460F027 projects. We also acknowledge TPA and Fundacion Domingo Martinez for financial support. M.L.F. and M.C.G. acknowledge MEC and CSIC for R&C and I3P research contracts. We gratefully acknowledge Dr.JoséBartolomé for discussions concerning mechanical properties and Dr.Fausto Rubio for porous surface-area measurement. Supporting Information is available online from Wiley InterScience or from the author.Gutiérrez, M.C et al. | 2006
- 1141
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Multilamellar-Vesicle-Assisted Electrodeposition of Inorganic Nanodots. S.G. acknowledges financial support from CNRS for a postdoctoral fellowship. The authors thank Christine Labrugère for XPS measurements and Patrick de Kepper for his help with the English.Faure, C. et al. | 2006
- 1141
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Multilamellar‐Vesicle‐Assisted Electrodeposition of Inorganic NanodotsFaure, C. / Guillot, S. / Weisbecker, P. / Saadaoui, H. et al. | 2006
- 1147
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Templated Self-Assembly of Colloidal Nanoparticles Controlled by Electrostatic Nanopatterning on a Si3N4-SiO2-Si Electret. This work was supported by the National Nanoscience and Nanotechnology Project (NSC 94-2120-M-007-002). We thank J.-L. Hsieh of Nano Device Laboratory (NDL) for the supply of NOS samples. Supporting Information is available online from Wiley InterScience or from the author.Tzeng, S.-D. et al. | 2006
- 1147
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Templated Self‐Assembly of Colloidal Nanoparticles Controlled by Electrostatic Nanopatterning on a Si3N4/SiO2/Si ElectretTzeng, S.‐D. / Lin, K.‐J. / Hu, J.‐C. / Chen, L.‐J. / Gwo, S. et al. | 2006
- 1152
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Synthesis of Monodisperse Bicolored Janus Particles with Electrical Anisotropy Using a Microfluidic Co‐Flow SystemNisisako, T. / Torii, T. / Takahashi, T. / Takizawa, Y. et al. | 2006
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Synthesis of Monodisperse Bicolored Janus Particles with Electrical Anisotropy Using a Microfluidic Co-Flow System. This work was partially supported by MEXT through Special Coordination Funds for Promoting Science and Technology.Nisisako, T. et al. | 2006
- 1157
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Trilayered Ceramic–Metal–Polymer Microcantilevers with Dramatically Enhanced Thermal SensitivityLin, Y.‐H. / McConney, M. E. / LeMieux, M. C. / Peleshanko, S. / Jiang, C. / Singamaneni, S. / Tsukruk, V. V. et al. | 2006
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Trilayered Ceramic-Metal-Polymer Microcantilevers with Dramatically Enhanced Thermal Sensitivity. We acknowledge H.Ko and K.Anderson for sample preparation and Dr.L.Zhang (Agiltron) for technical discussions. Support is provided by AFOSR.F49620-03-C-0069 Grant via Agiltron, Inc.Lin, Y.-H. et al. | 2006
- 1162
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Novel One‐Step Synthesis of Porous‐Supported Catalysts by Activated‐Carbon TemplatingBlanco, J. / Petre, A. L. / Yates, M. / Martin, M. P. / Suarez, S. / Martin, J. A. et al. | 2006
- 1162
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Novel One-Step Synthesis of Porous-Supported Catalysts by Activated-Carbon Templating. This work was supported by the Spanish Inter-ministerial Commission for Science and Technology (CICYT). M.Y, S.S., and A.L.P give thanks for their research fellowships from Ramon y Cajal, I3P, and Juan de la Cierva programs, respectively.Blanco, J. et al. | 2006
- 1166
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Strong Anisotropy in the Far‐Infrared Absorption Spectra of Stretch‐Aligned Single‐Walled Carbon NanotubesAkima, N. / Iwasa, Y. / Brown, S. / Barbour, A. M. / Cao, J. / Musfeldt, J. L. / Matsui, H. / Toyota, N. / Shiraishi, M. / Shimoda, H. et al. | 2006
- 1166
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Strong Anisotropy in the Far-Infrared Absorption Spectra of Stretch-Aligned Single-Walled Carbon Nanotubes. Work at Tohoku University is partially supported by a grant from the Ministry of Education, Culture, Sport, Science, and Technology, Japan (17204022, 17069003, and 16076201). Work at UT is supported by the Division of Materials Science at the National Science Foundation (DMR-0139414). We thank Y.Sakakibara, T.Nakanishi, and D.B.Tanner for useful discussions.Akima, N. et al. | 2006
- 1170
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Nanostructuring and High Thermoelectric Efficiency in p-Type Ag(Pb1-ySny)mSbTe2+m. We thank Prof. S.D. Mahanti for useful discussions. The 200kV Field Emission Gun Transmission Electron Microscope was acquired with an NSF grant (DMR-0079578) (MSU Center for Advanced Microscopy). Financial support from the Office of Naval Research (MURI program) is gratefully acknowledged. Supporting Information is available online from Wiley InterScience or from the author.Androulakis, J. et al. | 2006
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Nanostructuring and High Thermoelectric Efficiency in p‐Type Ag(Pb1 – ySny)mSbTe2 + mAndroulakis, J. / Hsu, K. F. / Pcionek, R. / Kong, H. / Uher, C. / D'Angelo, J. J. / Downey, A. / Hogan, T. / Kanatzidis, M. G. et al. | 2006
- 1174
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Well‐Defined Non‐spherical Copper Sulfide Mesocages with Single‐Crystalline Shells by Shape‐Controlled Cu2O Crystal TemplatingJiao, S. / Xu, L. / Jiang, K. / Xu, D. et al. | 2006
- 1174
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Well-Defined Non-spherical Copper Sulfide Mesocages with Single-Crystalline Shells by Shape-Controlled Cu2O Crystal Templating. This work is supported by the NSFC (Grant No. 20433010, 20525309, 20521201, 20571025) and the MSTC (MSBRDP, Grant No. 2000077503). Supporting Information is available online at Wiley InterScience or from the author.Jiao, S. et al. | 2006
- 1178
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Fast and Reversible Surface Redox Reaction in Nanocrystalline Vanadium Nitride SupercapacitorsChoi, D. / Blomgren, G. E. / Kumta, P. N. et al. | 2006
- 1178
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Fast and Reversible Surface Redox Reaction in Nanocrystalline Vanadium Nitride Supercapacitors. We thank Tom Nuhfer of Carnegie Mellon University and Wayne Jennings of Case Western Reserve University for their assistance in HRTEM and XPS analysis, respectively. This work was supported by the Carnegie Mellon University and the National Science Foundation (Grants CTS-0000563). Supporting Information is available online at Wiley InterScience or from the author.Choi, D. et al. | 2006
- 1183
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Building Nanocrystalline Planar Defects within Self‐Assembled Photonic Crystals by Spin‐CoatingPozas, R. / Mihi, A. / Ocaña, M. / Míguez, H. et al. | 2006
- 1183
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Building Nanocrystalline Planar Defects within Self-Assembled Photonic Crystals by Spin-Coating. This work has been funded by Fundacion Ramon Areces. We thank F. Varela for his help during SEM characterization.Pozas, R. et al. | 2006
- 1188
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A Facile Route to ZnS–Polymer Nanocomposite Optical Materials with High Nanophase Content via γ‐Ray Irradiation Initiated Bulk PolymerizationLü, C. / Cheng, Y. / Liu, Y. / Liu, F. / Yang, B. et al. | 2006
- 1188
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A facile route to ZnS-polymer nanocomposite optical materials with high nanophase content via gamma-ray irradiation intitiated bulk polymerizationLü, Changli / Cheng, Yuanrong / Liu, Yifei / Liu, Feng / Yang, Bai et al. | 2006
- 1188
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A Facile Route to ZnS-Polymer Nanocomposite Optical Materials with High Nanophase Content via g-Ray Irradiation Initiated Bulk PolymerizationLu, C. / Cheng, Y. / Liu, Y. / Liu, F. / Yang, B. et al. | 2006
- 1188
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A Facile Route to ZnS-Polymer Nanocomposite Optical Materials with High Nanophase Content via -Ray Irradiation Initiated Bulk Polymerization. This work was supported by the Program for Changjiang Scholars and Innovative Research Team in University (IRT04222) and the Science Foundation for Young Teachers of Northeast Normal University (No.111494015).Lü, C. et al. | 2006
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Urea‐Melt Solubilization of Single‐Walled Carbon NanotubesFord, W. E. / Jung, A. / Hirsch, A. / Graupner, R. / Scholz, F. / Yasuda, A. / Wessels, J. M. et al. | 2006
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Urea-Melt Solubilization of Single-Walled Carbon Nanotubes. The authors gratefully acknowledge Dr.F. Hennrich and Prof.M. Kappes (Universität Karlsruhe) for providing SWNTs produced by a laser-ablation method, and Dr.Y. Joseph (Materials Science Laboratory) for XPS measurements of U-SWNTs from entry9 and the UA-SWNTs from entry8 (Table1).Ford, W.E et al. | 2006
- 1198
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Advanced Hydrogen‐Storage Materials Based on Sc‐, Ce‐, and Pr‐Doped NaAlH4Bogdanović, B. / Felderhoff, M. / Pommerin, A. / Schüth, F. / Spielkamp, N. et al. | 2006
- 1198
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Advanced Hydrogen-Storage Materials Based on Sc-, Ce-, and Pr-Doped NaAlH4. This work was partially supported by General Motors Fuel Cell Activities in addition to the basic funding by the Max-Planck-Gesellschaft. We would also like to acknowledge the input of the other members of the hydrogen storage team, J.M. Bellosta von Colbe, J. Kornatowski, M. Mamatha, W. Schmidt, G. Streukens, C. Weidenthaler, and B. Zibrowius. Supporting Information is available online from Wiley InterScience or from the author.Bogdanovic, B. et al. | 2006
- 1198
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Advanced hydrogen-storage materials based on Sc-, Ce-, and Pr-doped NaAIH4Bogdanovic, Borislav / Felderhoff, Michael / Pommerin, Andre / Schüth, Ferdi / Spielkamp, Nick et al. | 2006
- 1202
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High-Efficiency Organic-Dye- Sensitized Solar Cells Controlled by Nanocrystalline-TiO2 Electrode Thickness. This work was supported by a grant from the Swiss Federal Energy Office (OFEN).Ito, S. et al. | 2006
- 1202
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High‐Efficiency Organic‐Dye‐ Sensitized Solar Cells Controlled by Nanocrystalline‐TiO2 Electrode ThicknessIto, S. / Zakeeruddin, S. M. / Humphry‐Baker, R. / Liska, P. / Charvet, R. / Comte, P. / Nazeeruddin, M. K. / Péchy, P. / Takata, M. / Miura, H. et al. | 2006
- 1206
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Preparation of a Periodically Ordered Mesoporous Organosilica Material Using Chiral Building BlocksPolarz, S. / Kuschel, A. et al. | 2006
- 1206
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Preparation of a Periodically Ordered Mesoporous Organosilica Material Using Chiral Building Blocks. The work has been funded by the German Science Foundation (DFG) in the framework of an Emmy-Noether research grant. Prof.M.Driess is gratefully acknowledged for his generous support. We thank Dr.A.Thomas, Prof.M.Antonietti, and Prof.G.A.Ozin for helpful discussions.Polarz, S. et al. | 2006
- 1210
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Technique for Preparing Ultrafine Nanocrystalline Bulk Material of Pure Rare-Earth Metals. This work is supported by the National Natural Science Foundation of China (50401001, 50271001), the Key Project of Science & Technology Innovation Engineering, The Chinese Ministry of Education (705004), the Beijing Natural Science Foundation (2041001), and the Program of Beijing New Star of Science and Technology (2004B04). The authors thank Prof.M.Rettenmayr, from the Friedrich-Schiller-University Jena, for the very helpful discussions. Supporting Information is available online from Wiley InterScience or from the author.Song, X. et al. | 2006
- 1210
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Technique for Preparing Ultrafine Nanocrystalline Bulk Material of Pure Rare‐Earth MetalsSong, X. / Zhang, J. / Yue, M. / Li, E. / Zeng, H. / Lu, N. / Zhou, M. / Zuo, T. et al. | 2006
- 1216
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Highly Efficient Organic Blue Electrophosphorescent Devices Based on 3,6‐Bis(triphenylsilyl)carbazole as the Host MaterialTsai, M.‐H. / Lin, H.‐W. / Su, H.‐C. / Ke, T.‐H. / Wu, C.‐c. / Fang, F.‐C. / Liao, Y.‐L. / Wong, K.‐T. / Wu, C.‐I et al. | 2006
- 1216
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Highly Efficient Organic Blue Electrophosphorescent Devices Based on 3,6-Bis(triphenylsilyl)carbazole as the Host Material. The authors gratefully acknowledge the financial support from the National Science Council of Taiwan. Supporting Information is available online at Wiley InterScience or from the author.Tsai, M.-H. et al. | 2006
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Author Index and Subject Index Adv. Mater. 9/2006| 2006
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Cover Picture: Fast and Reversible Surface Redox Reaction in Nanocrystalline Vanadium Nitride Supercapacitors (Adv. Mater. 9/2006)Choi, D. / Blomgren, G. E. / Kumta, P. N. et al. | 2006
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Inside Front Cover: Trilayered Ceramic–Metal–Polymer Microcantilevers with Dramatically Enhanced Thermal Sensitivity (Adv. Mater. 9/2006)Lin, Y.‐H. / McConney, M. E. / LeMieux, M. C. / Peleshanko, S. / Jiang, C. / Singamaneni, S. / Tsukruk, V. V. et al. | 2006