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含氢化合物的晶体学:实现中子粉末衍射的潜力

Crystallography of hydrogen-containing compounds: realizing the potential of neutron powder diffraction.

作者信息

Weller Mark T, Henry Paul F, Ting Valeska P, Wilson Chick C

机构信息

School of Chemistry, University of Southampton, Southampton, UK SO9 5NH.

出版信息

Chem Commun (Camb). 2009 Jun 7(21):2973-89. doi: 10.1039/b821336d. Epub 2009 Mar 12.

Abstract

Hydrogen forms more compounds than any other element in the Periodic Table, yet methods for accurately, precisely and rapidly determining its position in a crystal structure are not readily available. The latest generation of high-flux neutron powder diffractometers, operating under optimised collection geometries, allow hydrogen positions to be extracted from the diffraction patterns of polycrystalline hydrogenous compounds without resorting to isotopic substitution. Neutron powder diffraction for hydrogenous materials has a wide range of applications within chemistry. These include the study of hydrogen-energy materials, coordination and organometallic compounds, hydrogen-bonded structures and ferroelectrics, geomaterials, zeolites and small molecule organics, such as simple sugars and amino acids. The technique is particularly well suited to parametric studies, for example as a function of temperature or pressure, where changes in hydrogen bonding patterns or decompositions involving hydrogen-containing molecules, such as water, are monitored.

摘要

氢形成的化合物比元素周期表中的任何其他元素都多,但准确、精确且快速地确定其在晶体结构中位置的方法却并不容易获得。最新一代的高通量中子粉末衍射仪在优化的收集几何条件下运行,能够从多晶含氢化合物的衍射图谱中提取氢的位置,而无需借助同位素替代。含氢材料的中子粉末衍射在化学领域有广泛的应用。这些应用包括对氢能材料、配位化合物和有机金属化合物、氢键结构和铁电体、地质材料、沸石以及小分子有机物(如单糖和氨基酸)的研究。该技术特别适合进行参数研究,例如作为温度或压力的函数,监测氢键模式的变化或涉及含氢分子(如水)的分解情况。

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