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Titlebook: Hydrogen Materials Science and Chemistry of Carbon Nanomaterials; T. Nejat Veziroglu,Svetlana Yu. Zaginaichenko,Ayfe Conference proceeding

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发表于 2025-3-21 18:47:36 | 显示全部楼层 |阅读模式
书目名称Hydrogen Materials Science and Chemistry of Carbon Nanomaterials
编辑T. Nejat Veziroglu,Svetlana Yu. Zaginaichenko,Ayfe
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概述The various advanced materials and technologies of their synthesis are considered.Presents the consideration of the physics, chemistry, thermodynamics and kinetics of processes of energy conversion, w
丛书名称Nato Security through Science Series A:
图书封面Titlebook: Hydrogen Materials Science and Chemistry of Carbon Nanomaterials;  T. Nejat Veziroglu,Svetlana Yu. Zaginaichenko,Ayfe Conference proceeding
描述The 2005 International Conference “Hydrogen Materials Science and Chemistry of Carbon Nanomaterials” (ICHMS’2005) was held in September 5-11, 2005 in the remarkable city Sevastopol (Crimea, Ukraine) known for its heroic and unusual th fate. In the tradition of the earlier ICHMS conferences, this 9 ICHMS’2005 meeting served as an multidisciplinary forum for the presentation and discussion of the most recent research on transition to hydrogen-based energy systems, technologies for hydrogen production, storage, utilization, materials processing and chemical behavior, energy and environmental problems. The aim of ICHMS’2005 was to provide the wide overview of the latest scientific results on basic research and technological applications of hydrogen interactions with metals and other materials. The active representatives from industry, research/academic organizations and governmental agencies could meet, discuss and present the most recent advances in hydrogen concepts, processes and systems, to evaluate current progress and to exchange academic information, to identify research needs and future development in this important area. This conference should help further the progress of hydr
出版日期Conference proceedings 2007
关键词Biology; Chemistry; Cluster; Fulleren; NATO; Nanocar; Nanomaterial; Nanotube; Science; Security; Sub-Series A;
版次1
doihttps://doi.org/10.1007/978-1-4020-5514-0
isbn_ebook978-1-4020-5514-0Series ISSN 1871-4641 Series E-ISSN 1871-4684
issn_series 1871-4641
copyrightSpringer Science+Business Media B.V. 2007
The information of publication is updating

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发表于 2025-3-21 23:14:52 | 显示全部楼层
CONDUCTIVITY OF C60 FULLERENE CRYSTALS UNDER MULTI-STEP DYNAMIC COMPRESSION UP TO 300 KBAR, whereas conductivity decreasing can be explained on the assumption that the energy barrier of polymerization ofC. reduces with pressure increasing approximately in the same measure, as band-gap energy.
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ELECTRONIC STRUCTURE EXPLORATION OF ACTIVE ELEMENT SURFACE FOR HYDROGEN SENSOR BASED ON WO3-x NANOP-groups on the surface of nonstoichiometric samples is higher than on the stoichiometric ones. High sensitivity of the hydrogen sensor based on WO.·(OH). at 293 K can be connected with forming of proton conductivity mechanism.
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CREATION OF HYDROGEN - SELECTIVE TUBULAR COMPOSITE MEMBRANES BASED ON Pd-ALLOYS: I. IMPROVEMENT OF tinction consists in using metal nickel, which is analog of palladium in many respects, for the modification of the porous structure of ceramic substrates. Magnetron sputtering is the most perspective for support modification with Ni layer and the following Pd-thin film deposition.
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1871-4641 modynamics and kinetics of processes of energy conversion, wThe 2005 International Conference “Hydrogen Materials Science and Chemistry of Carbon Nanomaterials” (ICHMS’2005) was held in September 5-11, 2005 in the remarkable city Sevastopol (Crimea, Ukraine) known for its heroic and unusual th fate.
发表于 2025-3-22 18:08:47 | 显示全部楼层
HYDRIDES FORMATION IN HOLLOW CYLINDER,of the latter ones lead to forming microcracks on interphase boundaries. The hydride formation process depends on the level and nature of stresses distribution. The analytical analysis results are attracted for explaining physical mechanism of the hydrides formation in hollow cylinder with residual stresses.
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RADIATION INDUCED PHENOMENA ON ELECTRONIC AND PROTONIC CONDUCTIONS OF COMPACT HYDRIDE-ELECTROLYTE Fon fluence, while that without H reduced with increasing the fluence. The fluence dependence on the radiation enhanced diffusion of H shows that the radiation induced defects, produced by neutron collisions, and the radiolysis have no influence on the protonic conduction. T.N. Veziroglu et al. (eds.),
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