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[Ag20 {S2 P(OR)2 }12 ]:一种具有手性金属核心和高异构潜力的超原子络合物。

[Ag20 {S2 P(OR)2 }12 ]: A Superatom Complex with a Chiral Metallic Core and High Potential for Isomerism.

作者信息

Dhayal Rajendra S, Lin Yan-Ru, Liao Jian-Hong, Chen Yuan-Jang, Liu Yu-Chiao, Chiang Ming-Hsi, Kahlal Samia, Saillard Jean-Yves, Liu C W

机构信息

Department of Chemistry, National Dong Hwa University, No. 1, Sec. 2, Da Hsueh Rd., Shoufeng, Hualien, 97401, Taiwan, R.O.C.

Centre for Chemical Sciences, School of Basic and Applied Sciences, Central University of Punjab, Bathinda, 151 001, India.

出版信息

Chemistry. 2016 Jul 11;22(29):9943-7. doi: 10.1002/chem.201602275. Epub 2016 Jun 8.

DOI:10.1002/chem.201602275
PMID:27189869
Abstract

The synthesis and structural determination of a silver nanocluster [Ag20 {S2 P(OiPr)2 }12 ] (2), which contains an intrinsic chiral metallic core, is produced by reduction of one silver ion from the eight-electron superatom complex Ag21 {S2 P(OiPr)2 }12 (1) by borohydrides. Single-crystal X-ray analysis displays an Ag20 core of pseudo C3 symmetry comprising a silver-centered Ag13 icosahedron capped by seven silver atoms. Its n-propyl derivative, [Ag20 {S2 P(OnPr)2 }12 ] (3), can also be prepared by the treatment of silver(I) salts and dithiophosphates in a stoichiometric ratio in the presence of excess amount of BH4 . Crystal structure analyses reveal that the capping silver-atom positions relative to their icosahedral core are distinctly different in 2 and 3 and generate isomeric, chiral Ag20 cores. Both Ag20 clusters display an emission maximum in the near IR region. DFT calculations are consistent with a description within the superatom model of an 8-electron Ag13 core protected by a Ag7 {S2 P(OR)2 }12 external shell. Two additional structural variations are predicted by DFT, showing the potential for isomerism in such [Ag20 {S2 P(OR)2 }12 ] species.

摘要

银纳米团簇Ag20{S2P(OiPr)2}12的合成与结构测定,其包含一个固有的手性金属核,是通过硼氢化物从八电子超原子络合物Ag21{S2P(OiPr)2}12(1)中还原一个银离子而产生的。单晶X射线分析显示,具有伪C3对称性的Ag20核由一个以银为中心的Ag13二十面体和七个银原子封顶组成。它的正丙基衍生物Ag20{S2P(OnPr)2}12也可以通过在过量BH4存在下,以化学计量比处理银(I)盐和二硫代磷酸盐来制备。晶体结构分析表明,在2和3中,封顶银原子相对于其二十面体核的位置明显不同,并产生异构的手性Ag20核。两种Ag20团簇在近红外区域均显示出最大发射峰。密度泛函理论计算与超原子模型中由Ag7{S2P(OR)2}12外壳保护的8电子Ag13核的描述一致。密度泛函理论预测了另外两种结构变体,表明此类[Ag20{S2P(OR)2}12]物种存在异构的可能性。

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