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对金团簇保护层的磁性研究。

A magnetic look into the protecting layer of Au clusters.

作者信息

Agrachev Mikhail, Antonello Sabrina, Dainese Tiziano, Gascón José A, Pan Fangfang, Rissanen Kari, Ruzzi Marco, Venzo Alfonso, Zoleo Alfonso, Maran Flavio

机构信息

Department of Chemistry , University of Padova , via Marzolo 1 , 35131 Padova , Italy . Email:

Department of Chemistry , University of Connecticut , 55 North Eagleville Road, Storrs , 06269 Connecticut , USA.

出版信息

Chem Sci. 2016 Dec 1;7(12):6910-6918. doi: 10.1039/c6sc03691k. Epub 2016 Sep 19.

Abstract

The field of molecular metal clusters protected by organothiolates is experiencing a very rapid growth. So far, however, a clear understanding of the fine interactions between the cluster core and the capping monolayer has remained elusive, despite the importance of the latter in interfacing the former to the surrounding medium. Here, we describe a very sensitive methodology that enables comprehensive assessment of these interactions. Pulse electron nuclear double resonance (ENDOR) was employed to study the interaction of the unpaired electron with the protons of the alkanethiolate ligands in four structurally related paramagnetic Au(SR)018 clusters (R = ethyl, propyl, butyl, 2-methylpropyl). Whereas some of these structures were known, we present the first structural description of the highly symmetric Au(SPr)018 cluster. Through knowledge of the structural data, the ENDOR signals could be successfully related to the types of ligand and the distance of the relevant protons from the central gold core. We found that orbital distribution affects atoms that can be as far as 6 Å from the icosahedral core. Simulations of the spectra provided the values of the hyperfine coupling constants. The resulting information was compared with that provided by H NMR spectroscopy, and molecular dynamics calculations provided useful hints to understanding differences between the ENDOR and NMR results. It is shown that the unpaired electron can be used as a very precise probe of the main structural features of the interface between the metal core and the capping ligands.

摘要

由有机硫醇盐保护的分子金属簇领域正在经历非常迅速的发展。然而,到目前为止,尽管簇核与封端单分子层之间的精细相互作用对于将前者与周围介质连接起来很重要,但对其的清晰理解仍然难以捉摸。在这里,我们描述了一种非常灵敏的方法,能够全面评估这些相互作用。采用脉冲电子核双共振(ENDOR)来研究未成对电子与四种结构相关的顺磁性Au(SR)₁₈簇(R = 乙基、丙基、丁基、2-甲基丙基)中链烷硫醇盐配体的质子之间的相互作用。虽然其中一些结构是已知的,但我们给出了高度对称的Au(SPr)₁₈簇的首次结构描述。通过了解结构数据,ENDOR信号能够成功地与配体类型以及相关质子距中心金核的距离联系起来。我们发现轨道分布会影响距离二十面体核最远达6 Å的原子。光谱模拟给出了超精细耦合常数的值。将所得信息与¹H NMR光谱提供的信息进行了比较,分子动力学计算为理解ENDOR和NMR结果之间的差异提供了有用的线索。结果表明,未成对电子可以用作金属核与封端配体之间界面主要结构特征的非常精确的探针。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd75/5450596/548876516a93/c6sc03691k-c1.jpg

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