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Titlebook: Spectroscopy of Emerging Materials; Proceedings of the N Eric C. Faulques,Dale L. Perry,Andrei V. Yeremenko Conference proceedings 2004 Spr

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书目名称Spectroscopy of Emerging Materials
副标题Proceedings of the N
编辑Eric C. Faulques,Dale L. Perry,Andrei V. Yeremenko
视频video
概述Highly topical materials with a focus on carbon and silicon nanomaterials including nanotubes, fullerenes, nanoclusters, metallic superconducting phases, molecular materials, magnetic and charge-strip
丛书名称NATO Science Series II: Mathematics, Physics and Chemistry
图书封面Titlebook: Spectroscopy of Emerging Materials; Proceedings of the N Eric C. Faulques,Dale L. Perry,Andrei V. Yeremenko Conference proceedings 2004 Spr
描述.A comprehensive discussion of the key role of modern spectroscopic investigations in interdisciplinary materials science and engineering, covering emerging materials that are either absolutely novel or well-known materials with recently discovered, exciting properties. ..The types of spectroscopy discussed include optical, electronic and magnetic, UV-visible absorption, Rayleigh scattering, photoluminescence, vibrational, magnetic resonance, electron energy loss, EXAFS, XANES, optical tomography, time-resolved spectroscopy, and point contact spectroscopy. The materials studied are highly topical, with a focus on carbon and silicon nanomaterials including nanotubes, fullerenes, nanoclusters, metallic superconducting phases, molecular materials, magnetic and charge-stripe oxides, and biomaterials. ..Theoretical treatments are presented of molecular vibrational dynamics, vibration-induced decay of electronic excited states, nanoscale spin-orbit coupling in 2D Si-based structures, and the growth of semiconductor clusters..
出版日期Conference proceedings 2004
关键词ESR; NIR; Photoemission spectroscopy; UV; X-ray absorption spectroscopy; electron energy loss spectroscop
版次1
doihttps://doi.org/10.1007/1-4020-2396-0
isbn_softcover978-1-4020-2395-8
isbn_ebook978-1-4020-2396-5Series ISSN 1568-2609
issn_series 1568-2609
copyrightSpringer Science+Business Media B.V. 2004
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Structural Studies of Bio- and Related Materials Using Synchrotron Radiation,sed to prepare nanoparticle materials, or, by controlled growth, can be formed as nanoparticles initially. The structural data are important for making detailed calculations, models, and deriving reaction mechanisms involving metal ion-based biochemical systems.
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Progress on Electron Energy Loss Spectroscopy of Nanomaterials,ons⋯), nanomaterials (composites, quantum wells⋯). Special consideration is given to the simulation of EELS spectra, showing the crucial explanatory aspect provided by theory. Finally, a more prospective part envisages possible near future developments in EELS which may help us solve forth-coming challenges in nanometer-scale analysis.
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Progress in Light Emission from Silicon Nanostructures,erse approaches to engineering efficient light emission in silicon nanostructures. These different approaches are placed in context and their prospects for application in silicon-based optoelectronics are assessed.
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Light Scattering of Magnets in the Proximity to Quantum Criticality,ude important symmetry information. The use of this experimental technique will be demonstrated on three model systems, the frustrated spin dimer system SrCu(BO.)., the spin tetrahedra system Cu.Te.O.Br. and the layered pseudo gap system TiOCl.
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Progress on Electron Energy Loss Spectroscopy of Nanomaterials,probe. All elements of the periodic table can be detected, which makes it an essential technique for nanomaterial studies. After presenting the basis of the technique, a review of the most recent results is presented with a focus on: interfaces (Si-SiO. and derivatives), nano-objects (nanotubes, oni
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