首页> 外文期刊>The Journal of Chemical Physics >Structural and electronic properties of protein/thiolate-protected gold nanocluster with “staple” motif: A XAS, L-DOS, and XPS study
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Structural and electronic properties of protein/thiolate-protected gold nanocluster with “staple” motif: A XAS, L-DOS, and XPS study

机译:具有“主食”基序的蛋白质/硫醇盐保护的金纳米簇的结构和电子性质:XAS,L-DOS和XPS研究

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Following the recent breakthrough of total structural determination of a Au-thiolate nanocluster [P. Jadzinsky et al., Science 318, 430 (2007)], extensive interests have been stimulated to unveil (or revisit) the structure-property relationship of various thiolate-Au nanostructures in light of the new finding of –SR–(Au–SR)_x– “staple” motif. Here, we present experimental x-ray absorption spectroscopy (XAS) and x-ray photoelectron spectroscopy (XPS) results on the local structure and electronic properties of thiolate-protected Au nanocluster encapsulated in bovine serum albumin (Au-BSA) together with theoretical calculation of projected local density of states (l-DOS) of Au_(25)(SR)_(18) model cluster. Analysis of the Au L_3-edge extended x-ray absorption fine structure (EXAFS) of Au-BSA suggested that the nanocluster is Au_(25) with Au-thiolate “staple” motif. X-ray absorption near-edge structure (XANES) and Au 4f XPS were used to probe the electronic behavior of Au-BSA. The Au d-electron density of Au-BSA was found to decrease by 0.047 e? relative to that of the bulk. A self-consistent real space Green’s function approach implemented in ab initio FEFF8 program was used to calculate the l-DOS of Au_(25)(SR)_(18) and other model clusters from a site-specific perspective. The theoretical results are in good agreement with the experimental d-DOS data of Au-BSA and, importantly, systematically illustrate the effect of Au-thiolate “staple” motif on the electronic behavior of Au_(25)(SR)_(18). The present work sheds light on the structure-property relationship of thiolate-protected Au25 from both experimental and theoretical perspectives and illustrates the usefulness of XAS/l-DOS method in such studies.
机译:继近来突破了Au-硫醇盐纳米簇的整体结构测定[P. Jadzinsky et al。,Science 318,430(2007)],根据–SR–(Au–SR)的新发现,激发了广泛的兴趣来揭示(或重新审视)各种硫醇盐-Au纳米结构的结构-性质关系。 )_x –“装订”主题。在这里,我们介绍了实验性x射线吸收光谱(XAS)和x射线光电子能谱(XPS)对牛血清白蛋白(Au-BSA)中硫醇盐保护的金纳米团簇的局部结构和电子性能的研究结果,以及理论计算结果Au_(25)(SR)_(18)模型簇的投影局部状态密度(l-DOS)的分布。对Au-BSA的Au L_3边缘扩展x射线吸收精细结构(EXAFS)的分析表明,纳米簇是具有Au-thiolate“ stap”基序的Au_(25)。 X射线吸收近边缘结构(XANES)和Au 4f XPS被用来探测Au-BSA的电子行为。发现Au-BSA的Au d电子密度降低了0.047 e?。相对于大部分而言。从头算FEFF8程序实现的自洽实空间格林函数方法用于从特定地点的角度计算Au_(25)(SR)_(18)和其他模型簇的l-DOS。理论结果与Au-BSA的实验d-DOS数据吻合良好,并且重要的是,系统地说明了硫醇金“主食”基序对Au_(25)(SR)_(18)电子行为的影响。本工作从实验和理论角度阐明了硫醇盐保护的Au25的结构-性质关系,并说明了XAS / 1-DOS方法在此类研究中的有用性。

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