Ma Xiao-Hong, Si Yubing, Luo Lan-Lan, Wang Zhao-Yang, Zang Shuang-Quan, Mak Thomas C W
Green Catalysis Center and Henan Key Laboratory of Crystalline Molecular Functional Materials, Henan International Joint Laboratory of Tumor Theranostical Cluster Materials, College of Chemistry, Zhengzhou 450001, China.
Department of Chemistry, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR 999077, China.
ACS Nano. 2022 Apr 26;16(4):5507-5514. doi: 10.1021/acsnano.1c09911. Epub 2022 Mar 30.
Metal precursors employed in the bottom-up synthesis of metal nanoclusters (NCs) are of great importance in directing their composition and geometrical structure. In this work, a silver nanocluster co-protected by phosphine and thiolate, namely, [Ag(PFBT)(TPP)] (, PFBT = pentafluorobenzenethiol, TPP = triphenylphosphine), was isolated and structurally characterized. It adopts a three-layered Ag@Ag@AgSP core-shell structure. The Ag@Ag kernel is unusual in multilayer noble metal NCs. By introducing a copper precursor in the synthesis, a bimetallic nanocluster [AgCu(PFBT)(TPP)] () with an identical structure to apart from two outer Ag atoms being substituted by Cu atoms was obtained. Astoundingly, the Cu precursor used in the synthesis was found to be critical in determining the final structure. The alteration of the Cu precursor led to the cocrystallization of the above alloy nanocluster with a Ag nanocluster, namely, [AgCu(PFBT)(TPP)]·[Ag(PFBT)(TPP)] (). The electronic structure analyzed by theoretical calculation reveals that is a 17-electron open-shell superatom. The optical absorption of , , and was compared and studied in detail. This work not only enriches the family of alloy metallic nanoclusters but also provides a metal NC-based cocrystal platform for in-depth study of its crystal growth and photophysical property.
用于自上而下合成金属纳米团簇(NCs)的金属前驱体对于指导其组成和几何结构非常重要。在这项工作中,分离并对结构进行了表征的一种由膦和硫醇盐共同保护的银纳米团簇,即[Ag(PFBT)(TPP)](PFBT = 五氟苯硫醇,TPP = 三苯基膦)。它采用三层Ag@Ag@AgSP核壳结构。Ag@Ag核在多层贵金属纳米团簇中并不常见。通过在合成中引入铜前驱体,得到了一种双金属纳米团簇[AgCu(PFBT)(TPP)](),其结构与除了两个外层Ag原子被Cu原子取代之外的[Ag(PFBT)(TPP)]相同。令人惊讶的是,发现合成中使用的铜前驱体对于确定最终结构至关重要。铜前驱体的改变导致上述合金纳米团簇与银纳米团簇[AgCu(PFBT)(TPP)]·[Ag(PFBT)(TPP)]()共结晶。通过理论计算分析的电子结构表明[AgCu(PFBT)(TPP)]是一个17电子开壳超原子。对[Ag(PFBT)(TPP)]、[AgCu(PFBT)(TPP)]和[AgCu(PFBT)(TPP)]·[Ag(PFBT)(TPP)]的光吸收进行了详细比较和研究。这项工作不仅丰富了合金金属纳米团簇家族,还为深入研究其晶体生长和光物理性质提供了一个基于金属纳米团簇的共晶平台。