催化作用
纳米材料基催化剂
纳米团簇
化学
金属有机化学
卡宾
氢胺化
多相催化
组合化学
金属
均相催化
齿合度
第2组金属有机化学
配体(生物化学)
纳米技术
有机化学
分子
材料科学
受体
生物化学
作者
Hui Shen,Qingyuan Wu,Sami Malola,Ying‐Zi Han,Zhen Xu,Ruixuan Qin,Xiongkai Tang,Yang‐Bo Chen,Boon K. Teo,Hannu Häkkinen,Nanfeng Zheng
摘要
The complexity of heterogeneous metal catalysts makes it challenging to gain insights into their catalytic mechanisms. Thus, there exists a huge gap between heterogeneous catalysis and organometallic catalysis. With the success in the preparation of highly robust atomically precise metal nanocluster catalysts (i.e., [Au 16 (NHC-1) 5 (PA) 3 Br 2 ] 3+ and [Au 17 (NHC-1) 4 (PA) 4 Br 4 ] +, where NHC-1 is a bidentate NHC ligand, and PA is phenylacetylide) with surface organometallic motifs anchored on the metallic core, we demonstrate in this work how the metallic core works synergistically with the surface organometallic motifs to enhance the catalysis. More importantly, the discovery allows the development of highly stable and recyclable heterogeneous metal catalysts to achieve efficient hydroamination of alkynes with an extremely low catalyst dosage (0.002 mol %), helping bridge the gap between heterogeneous and homogeneous metal catalysis. The surface modification of metal nanocatalysts with organometallic motifs provides a new design principle of metal catalysts with enhanced catalysis.
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