Sun Jing, Liu Jiahe, Su Hai-Feng, Li Simin, Tang Xiongkai, Xie Zhenlang, Xu Zhen, Jiang Wenya, Wei Jianyu, Gong Xuekun, He Ayisha, Wang Song, Jiang De-En, Zheng Nanfeng, Shen Hui
College of Energy Materials and Chemistry, Inner Mongolia University Hohhot 010021 China
Key Laboratory of Precision and Intelligent Chemistry, School of Chemistry and Materials Science, University of Science and Technology of China Hefei Anhui 230026 China
Chem Sci. 2025 Mar 10;16(15):6392-6401. doi: 10.1039/d4sc08547g. eCollection 2025 Apr 9.
The first copper-hydride nanocluster featuring eight free valence electrons has been successfully isolated and characterized spectroscopically. The structure of the nanocluster, represented by the chemical formula [Cu(PhSe)(PPh)(CFCOO)H] (referred to as CuH, where PPh denotes triphenylphosphine), has been precisely determined through single crystal X-ray diffraction analysis. Several distinguishing features differentiate the CuH clusters from previously reported examples. In terms of composition, these clusters represent a rare instance of high-nuclearity Cu nanoclusters containing hydride and stabilized by selenolate ligands. From an electronic standpoint, the stabilization of the nanocluster is achieved through its eight free valence electrons, marking it as the first copper-hydride cluster with this configuration. The alloying chemistry of the nanocluster also introduces unexpected findings in the field. The incorporation of silver atoms leads to the formation of [(CuAg)(PhSe)(PPh)(CFCOO)H] clusters, which exhibit significant structural differences from the parent cluster. Both the homo and alloy clusters display dual-emission properties at 298 K, with the clusters additionally showcasing triple or even quadruple emission at 77 K. This work is anticipated to stimulate research interest in hydride-containing metal nanoclusters, focusing not only on compositional tailoring and structural engineering, but also on electronic structure details and potential applications.
首个具有八个自由价电子的氢化铜纳米团簇已成功分离并通过光谱进行了表征。该纳米团簇的结构由化学式[Cu(PhSe)(PPh)(CFCOO)H]表示(简称为CuH,其中PPh表示三苯基膦),已通过单晶X射线衍射分析精确确定。几个显著特征使CuH团簇与先前报道的例子有所不同。在组成方面,这些团簇是含有氢化物并由硒醇盐配体稳定的高核铜纳米团簇的罕见实例。从电子角度来看,纳米团簇通过其八个自由价电子实现稳定,这使其成为具有这种构型的首个氢化铜团簇。纳米团簇的合金化学在该领域也带来了意想不到的发现。银原子的掺入导致[(CuAg)(PhSe)(PPh)(CFCOO)H]团簇的形成,其结构与母体团簇有显著差异。同核和合金团簇在298 K时均表现出双发射特性,这些团簇在77 K时还额外展现出三重甚至四重发射。预计这项工作将激发对含氢化物金属纳米团簇的研究兴趣,不仅关注组成剪裁和结构工程,还关注电子结构细节和潜在应用。