氮化硼
钯
材料科学
表面改性
多孔性
纳米颗粒
催化作用
硼
炔烃
纳米技术
化学工程
氮化物
化学
复合材料
有机化学
图层(电子)
工程类
作者
Simon Büchele,Zupeng Chen,Edvin Fako,Frank Krumeich,Roland Hauert,Olga V. Safonova,Núria López,Sharon Mitchell,Javier Pérez‐Ramírez
标识
DOI:10.1002/anie.202005842
摘要
Chemical modifiers enhance the efficiency of metal catalysts in numerous applications, but their introduction often involves toxic or expensive precursors and complicates the synthesis. Here, we show that a porous boron nitride carrier can directly modify supported palladium nanoparticles, originating unparalleled performance in the continuous semi-hydrogenation of alkynes. Analysis of the impact of various structural parameters reveals that using a defective high surface area boron nitride and ensuring a palladium particle size of 4-5 nm is critical for maximizing the specific rate. The combined experimental and theoretical analyses point towards boron incorporation from defects in the support to the palladium subsurface, creating the desired isolated ensembles determining the selectivity. This practical approach highlights the unexplored potential of using tailored carriers for catalyst design.
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