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Titlebook: Nanostructures: Synthesis, Functional Properties and Application; Thomas Tsakalakos,Ilya A. Ovid’ko,Asuri K. Vasudev Conference proceeding

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書(shū)目名稱(chēng)Nanostructures: Synthesis, Functional Properties and Application
編輯Thomas Tsakalakos,Ilya A. Ovid’ko,Asuri K. Vasudev
視頻videohttp://file.papertrans.cn/662/661042/661042.mp4
叢書(shū)名稱(chēng)NATO Science Series II: Mathematics, Physics and Chemistry
圖書(shū)封面Titlebook: Nanostructures: Synthesis, Functional Properties and Application;  Thomas Tsakalakos,Ilya A. Ovid’ko,Asuri K. Vasudev Conference proceeding
描述The Advanced Study Institute on Synthesis, Functional Properties and Applications of Nanostructures, held at the Knossos Royal Village, Heraklion, Crete, Greece, July 26, 2002 - August 4, 2002, successfully reviewed the state-of-the-art of nanostructures and nanotechnology. It was concluded that Nanotechnology is widely agreed to be the research focus that will lead to the next generation of breakthroughs in science and engineering. There are three cornerstones to the expectation that Nanotechnology will yield revolutionary advances in understanding and application: ? Breakthroughs in properties that arise from materials fabricated from the nanoscale. ? Synergistic behavior that arise from the combination of disparate types of materials (soft vs. hard, organic vs. inorganic, chemical vs. biological vs. solid state) at the nanoscale. ? Exploitation of natural (e.g. chemical and biological) assembly mechanisms that can accomplish structural control at the nanoscale. It is expected that this will lead to paradigms for assembling bio-inspired functional systems that accomplish desirable properties that are either unavailable or prohibitively expensive using top-down approaches.
出版日期Conference proceedings 2003
關(guān)鍵詞ceramics; continuum mechanics; deformation; electron microscopy; ferroelectrics; iron; metals; microscopy
版次1
doihttps://doi.org/10.1007/978-94-007-1019-1
isbn_softcover978-1-4020-1753-7
isbn_ebook978-94-007-1019-1Series ISSN 1568-2609
issn_series 1568-2609
copyrightKluwer Academic Publishers 2003
The information of publication is updating

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Genesis of Nanosized Particles, Grains and Interfaces in the Rate-Controlled Processes of Synthesis g behavior and properties of sintered bodies. The most important achievement of today’s techniques of synthesis and consolidation of nanoparticles is flexible control over properties [2]. To illustrate this from experiments, the present review is compiled.
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Discussion about Scaling Effects in Metals with a Continuum Mechanics Approachand self-organized at the scale of this load percolation network (which is a new result). After the yield point, if the material displays plastic softening, this self-organization controls the development of plasticity and lead to early plastic strain localization..Now the propensity for a metal, to
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Scale Dependent Anelasticity and Mechanical Behavior: The Case of Nanocrystalline Metals the crystallite size the significant volume fraction of interfaces and the modified dislocation dynamics constitute key parameters which must be carefully controlled to tailor the mechanical behavior. Specific items of scale dependent anelasticity are connected with the possibility offered to combi
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The Influence of the Grain Boundary Phase Transitions on the Properties of Nanostructured Materialshen GB solidus line is crossed by a change in the temperature or concentration. In case if two solid phase are in equilibrium, the GB “solid state wetting” (or covering) can occur. In this case the layer of the solid phase . has to substitute GBs in the solid phase .. Such covering GB phase transiti
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Misfit Defects in Nanostructured Filmsn different substrates. It is stable and doesn’t decompose at annealing. During annealing the new intermediate metastable phases, which are stable only within the definite temperature and concentration range, have developed. The structure, kinetics of phase transformation and evolution of the film m
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