Interface engineering enabled sintering-resistant metal nanocatalysts via reverse Ostwald ripening  

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作  者:Ying Sun Wenhui Fang Jieshan Qiu 

机构地区:[1]Institute of Clean Energy Chemistry,Key Laboratory for Green Synthesis and Preparative Chemistry of Advanced Materials of Liaoning Province,College of Chemistry,Liaoning University,Shenyang 110036,China [2]State Key Laboratory of Chemical Resource Engineering,College of Chemical Engineering,Beijing University of Chemical Technology,Beijing 100029,China

出  处:《Science China Chemistry》2024年第9期2789-2791,共3页中国科学(化学英文版)

摘  要:The design and fabrication of advanced nanocatalysts with the high activity,selectivity,and superior durability remains a big challenge in industrial catalysis[1,2].The sintering of nanocatalysts under the thermally and/or chemically triggered conditions is a bottle-neck issue,which seriously decreases the amount of the exposed active sites and changes the original electronic structure of catalysts,resulting in the irreversible catalyst deactivation and high capital and time cost in industrial operation[3].

关 键 词:DURABILITY IRREVERSIBLE CATALYSIS 

分 类 号:O643.36[理学—物理化学] TB383.1[理学—化学]

 

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