异构化
星团(航天器)
结晶学
配体(生物化学)
化学
溶剂
衍射
发光
金属
X射线晶体学
材料科学
光化学
结构变化
转化(遗传学)
结构异构体
核(代数)
化学物理
立体化学
自组装
分解
工作(物理)
纳米晶
铜
作者
Yao Wang,Fang-Xue Xiao,Ziyong Chen,Eric Ka‐Ho Wong,Jun Yi,Liang‐Liang Yan,Vivian Wing‐Wah Yam
标识
DOI:10.1073/pnas.2619869123
摘要
The construction of reversible structural isomerization in atomically precise metal clusters remains a daunting challenge. Herein, we report the application of a bifunctionalized phosphine-alkyne ligand, (2-ethynylphenyl)diphenylphosphine (HL), to synthesize an octanuclear copper(I) cluster Cu 8 -1 [(Cu 8 (L) 6 (PF 6 ) 2 ], which can undergo a clean and reversible transformation to a Cu 8 -2 isomer responsive to solvent or temperature stimuli. The structural isomerization process has been readily monitored by NMR in solution. Single-crystal X-ray diffraction studies further suggested the possible occurrence of a dynamic ligand rearrangement with reversible Cu–P coordination bond dissociation/reformation with the Cu 8 kernel remained intact. This reversible structural switching is accompanied by a luminescence color change between green (520 nm, Cu 8 -1 ) and red (625 nm, Cu 8 -2 ). This work not only provides a simple approach to achieve stimuli-induced isomerization between Cu 8 -1 and Cu 8 -2 but also offers an ideal platform for investigating their structure–property relationships.
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