X射线纳米化学的概念与发展

IF 2 2区 化学 Q2 CRYSTALLOGRAPHY
J. Helliwell
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引用次数: 6

摘要

[1] Lytle FW。EXAFS家谱:x射线吸收精细结构发展的个人历史。J同步加速器辐射.1999;6:123–134.[2]Binsted N,Pack MJ,Teller MT,Evans J.结合EXAFS和粉末衍射分析。《美国化学学会杂志》1996;118:11200–11210.[3]Chantler CT,Bunker BA,Abe H,Kimura M,Newville M,Welter E.呼吁对明确样品上同步加速器束线的XAFS稳定性和平台依赖性进行循环研究。J Synchrotron Rad.2018;25(4):935–943。[4]Filipponi A,Di Cicco A.第五周期元素x射线吸收光谱中的原子背景:双电子激发边缘的证据。Phys Rev.A.1995;52:1072–1078。[5]Jolliffe IT.主成分分析。纽约:施普林格出版社;2002.[6]Parsons AD,Price SWT,Wadeson N,Basham M,Beale AM,Ashton AW,Mosselmans JFW,Quinn PD。多模式断层扫描数据集的自动处理。J同步辐射。2017年;24:248-256。[7]Rehr JJ,阿尔伯斯RC。x射线吸收精细结构的理论方法。Rev Mod Phys。2000年;72:621–654。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
X-ray nanochemistry concepts and development
[1] Lytle FW. The EXAFS family tree: a personal history of the development of x-ray absorption fine structure. J Synchrotron Rad. 1999;6:123–134. [2] Binsted N, Pack MJ, Teller MT, Evans J. Combined EXAFS and powder diffraction analysis. J Am Chem Soc. 1996;118:11200–11210. [3] Chantler CT, Bunker BA, Abe H, Kimura M, Newville M, Welter E. A call for a round robin study of XAFS stability and platform dependence at synchrotron beamlines on well defined samples. J Synchrotron Rad. 2018;25(4):935–943. [4] Filipponi A, Di Cicco A. Atomic background in x-ray absorption spectra of fifth-period elements: evidence for double-electron excitation edges. Phys Rev A. 1995;52:1072–1078. [5] Jolliffe IT. Principal component analysis. New York: Springer-Verlag; 2002. [6] Parsons AD, Price SWT, Wadeson N, Basham M, Beale AM, Ashton AW, Mosselmans JFW, Quinn PD. Automatic processing of multimodal tomography datasets. J Synchrotron Radiat. 2017;24:248–256. [7] Rehr JJ, Albers RC. Theoretical approaches to x-ray absorption fine structure. Rev Mod Phys. 2000;72:621–654.
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来源期刊
Crystallography Reviews
Crystallography Reviews CRYSTALLOGRAPHY-
CiteScore
3.70
自引率
0.00%
发文量
16
审稿时长
>12 weeks
期刊介绍: Crystallography Reviews publishes English language reviews on topics in crystallography and crystal growth, covering all theoretical and applied aspects of biological, chemical, industrial, mineralogical and physical crystallography. The intended readership is the crystallographic community at large, as well as scientists working in related fields of interest. It is hoped that the articles will be accessible to all these, and not just specialists in each topic. Full reviews are typically 20 to 80 journal pages long with hundreds of references and the journal also welcomes shorter topical, book, historical, evaluation, biographical, data and key issues reviews.
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