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近边X射线吸收精细结构对复杂分子材料中键长的敏感性:晶体糖类的研究

NEXAFS Sensitivity to Bond Lengths in Complex Molecular Materials: A Study of Crystalline Saccharides.

作者信息

Gainar Adrian, Stevens Joanna S, Jaye Cherno, Fischer Daniel A, Schroeder Sven L M

机构信息

School of Chemical Engineering and Analytical Science, The University of Manchester , Oxford Road, Manchester M13 9PL, United Kingdom.

Material Measurement Laboratory, National Institute of Standards and Technology , Gaithersburg, Maryland 20899, United States.

出版信息

J Phys Chem B. 2015 Nov 12;119(45):14373-81. doi: 10.1021/acs.jpcb.5b07159. Epub 2015 Nov 3.

Abstract

Detailed analysis of the C K near-edge X-ray absorption fine structure (NEXAFS) spectra of a series of saccharides (fructose, xylose, glucose, galactose, maltose monohydrate, α-lactose monohydrate, anhydrous β-lactose, cellulose) indicates that the precise determination of IPs and σ* shape resonance energies is sensitive enough to distinguish different crystalline saccharides through the variations in their average C-OH bond lengths. Experimental data as well as FEFF8 calculations confirm that bond length variations in the organic solid state of 10(-2) Å can be experimentally detected, opening up the possibility to use NEXAFS for obtaining incisive structural information for molecular materials, including noncrystalline systems without long-range order such as dissolved species in solutions, colloids, melts, and similar amorphous phases. The observed bond length sensitivity is as good as that originally reported for gas-phase and adsorbed molecular species. NEXAFS-derived molecular structure data for the condensed phase may therefore be used to guide molecular modeling as well as to validate computationally derived structure models for such systems. Some results indicate further analytical value in that the σ* shape resonance analysis may distinguish hemiketals from hemiacetals (i.e., derived from ketoses and aldoses) as well as α from β forms of otherwise identical saccharides.

摘要

对一系列糖类(果糖、木糖、葡萄糖、半乳糖、一水合麦芽糖、一水合α - 乳糖、无水β - 乳糖、纤维素)的碳(C)K 边近边 X 射线吸收精细结构(NEXAFS)光谱进行的详细分析表明,对电离能(IPs)和σ* 形状共振能量的精确测定足够灵敏,能够通过不同结晶糖类平均 C - OH 键长的变化来区分它们。实验数据以及 FEFF8 计算结果证实,在有机固态中 10^(-2) Å 的键长变化能够通过实验检测到,这为利用 NEXAFS 获取分子材料(包括无长程有序的非晶态体系,如溶液中的溶解物种、胶体、熔体以及类似的非晶相)的精确结构信息开辟了可能性。观察到的键长灵敏度与最初报道的气相和吸附分子物种的灵敏度相当。因此,来自 NEXAFS 的凝聚相分子结构数据可用于指导分子建模以及验证此类体系通过计算得出的结构模型。一些结果表明,σ* 形状共振分析在区分半缩酮与半缩醛(即分别源自酮糖和醛糖)以及区分相同糖类的α 型和β 型方面具有进一步的分析价值。

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