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作 者:Chao Yang Lifeng Cui
机构地区:[1]School of Materials Science and Engineering,Dongguan University of Technology,Dongguan,Guangdong,523808,China [2]Department of Chemistry,University of Science and Technology of China,Hefei,Anhui,230026,China [3]College of Smart Energy,Shanghai Jiao Tong University,Shanghai,200030,China
出 处:《Green Energy & Environment》2023年第1期1-3,共3页绿色能源与环境(英文版)
基 金:support of the Start-up Research Fund of Dongguan University of Technology(KCYKYQD2017015).
摘 要:Supported metal catalysts,particularly for precious metals,have gained increasing attention in green synthetic chemistry.They can make metal-catalyzed organic synthesis more sustainable and economical due to easy separation of product with less metal residue,as well as reusability of the high-cost catalysts.Although great effort has been spent,the precise catalytic mechanism of supported metal-catalyzed reactions has not been clearly elucidated and the development of efficient and stable recyclable catalysts remains challenging.This highlight reveals a“molecular fence”metal stabilization strategy and discloses the metal evolution in Pd-catalyzed C-C bond formation reactions using Nheterocyclic carbene(NHC)-functionalized hypercrosslinked polymer support,wherein the polymeric skeleton isolates or confines the metal species involved in the catalytic reactions,and NHC captures free low-valent metal species in solution and stabilizes them on the support via strong metal-support coordination interaction.This strategy creates a novel route for the development of supported metal catalysts with high stability and provides insights into the reaction mechanism of heterogeneous catalysis.
关 键 词:Supported metal catalysts Hypercrosslinked polymers Molecular fence effect C-C bond Formations
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