催化作用
金属有机骨架
钯
纳米颗粒
材料科学
金属
组合化学
纳米技术
化学
有机化学
冶金
吸附
作者
Kwanghak Choe,Fengbin Zheng,Hui Wang,Yi Yuan,Wenshi Zhao,Guangxin Xue,Xueying Qiu,Myonghak Ri,Xinghua Shi,Yinglong Wang,Guodong Li,Zhiyong Tang
标识
DOI:10.1002/anie.201913453
摘要
Abstract The semihydrogenation of alkynes into alkenes rather than alkanes is of great importance in the chemical industry. Unfortunately, state‐of‐the‐art heterogeneous catalysts hardly achieve high turnover frequencies (TOFs) simultaneously with almost full conversion, excellent selectivity, and good stability. Here, we used metal–organic frameworks (MOFs) containing Zr metal nodes (“UiO”) with tunable wettability and electron‐withdrawing ability as activity accelerators for the semihydrogenation of alkynes catalyzed by sandwiched palladium nanoparticles (Pd NPs). Impressively, the porous hydrophobic UiO support not only leads to an enrichment of phenylacetylene around the Pd NPs but also renders the Pd surfaces more electron‐deficient, which leads to a remarkable catalysis performance, including an exceptionally high TOF of 13835 h −1 , 100 % phenylacetylene conversion 93.1 % selectivity towards styrene, and no activity decay after successive catalytic cycles. The strategy of using molecularly tailored supports is universal for boosting the selective semihydrogenation of various terminal and internal alkynes.
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