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在原子层面上对控制金属纳米团簇形态的极化效应的一种见解。

An insight, at the atomic level, into the polarization effect in controlling the morphology of metal nanoclusters.

作者信息

Kang Xi, Wei Xiao, Wang Shuxin, Zhu Manzhou

机构信息

Department of Chemistry, Centre for Atomic Engineering of Advanced Materials, Anhui Province Key Laboratory of Chemistry for Inorganic/Organic Hybrid Functionalized Materials, Anhui University Hefei 230601 P. R. China

Key Laboratory of Structure and Functional Regulation of Hybrid Materials, Anhui University, Ministry of Education Hefei 230601 P. R. China.

出版信息

Chem Sci. 2021 Jul 13;12(33):11080-11088. doi: 10.1039/d1sc00632k. eCollection 2021 Aug 25.

Abstract

The polarization effect has been a powerful tool in controlling the morphology of metal nanoparticles. However, a precise investigation of the polarization effect has been a challenging pursuit for a long time, and little has been achieved for analysis at the atomic level. Here the atomic-level analysis of the polarization effect in controlling the morphologies of metal nanoclusters is reported. By simply regulating the counterions, the controllable transformation from PtAg(S-PhMe) (S-Adm) (PPh) ( = 0-6, ) to PtAg(S-PhMe) () with a spherical configuration or to PtAg(S-Adm)(PPh) () with a tetrahedral configuration has been accomplished. In addition, the spherical or tetrahedral configuration of the clusters could be reversibly transformed by re-regulating the proportion of counterions with opposite charges. More significantly, the configuration transformation rate has been meticulously manipulated by regulating the polarization effect of the ions on the parent nanoclusters. The observations in this paper provide an intriguing nanomodel that enables the polarization effect to be understood at the atomic level.

摘要

极化效应一直是控制金属纳米颗粒形态的有力工具。然而,长期以来,对极化效应进行精确研究一直是一项具有挑战性的工作,在原子水平上的分析进展甚微。本文报道了在控制金属纳米团簇形态方面极化效应的原子水平分析。通过简单地调节抗衡离子,实现了从PtAg(S-PhMe) (S-Adm) (PPh) ( = 0 - 6, )到具有球形构型的PtAg(S-PhMe) ()或具有四面体构型的PtAg(S-Adm)(PPh) ()的可控转变。此外,通过重新调节带相反电荷的抗衡离子的比例,团簇的球形或四面体构型可以可逆转变。更重要的是,通过调节离子对母体纳米团簇的极化效应,精心控制了构型转变速率。本文的观察结果提供了一个有趣的纳米模型,使人们能够在原子水平上理解极化效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cac/8386652/3a25096d5916/d1sc00632k-f1.jpg

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