化学
光致发光
纳米团簇
配体(生物化学)
纳秒
纳米技术
光化学
光电子学
生物化学
有机化学
物理
材料科学
激光器
受体
光学
作者
Ying Zhang,Wei Zhang,Tai-Song Zhang,Chao Ge,Yang Tao,Wenwen Fei,Weigang Fan,Meng Zhou,Man‐Bo Li
摘要
The induced structural transformation provides an efficient way to precisely modulate the fine structures and the corresponding performance of gold nanoclusters, thus constituting one of the important research topics in cluster chemistry. However, the driving forces and mechanisms of these processes are still ambiguous in many cases, limiting further applications. In this work, based on the unique coordination mode of the pincer ligand-stabilized gold nanocluster Au8(PNP)4, we revealed the site-recognition mechanism for induced transformations of gold nanoclusters. The "open nitrogen sites" on the surface of the nanocluster interact with different inducers including organic compounds and metals and trigger the conversion of Au8(PNP)4 to Au13 and Au9Ag4 nanoclusters, respectively. Control experiments verified the site-recognition mechanism, and the femtosecond and nanosecond transient absorption spectroscopy revealed the electronic and photoluminescent evolution accompanied by the structural transformation.
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