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首页> 外文期刊>Angewandte Chemie >Hollow Zn/Co ZIF Particles Derived from Core-Shell ZIF-67@ZIF-8 as Selective Catalyst for the Semi-Hydrogenation of Acetylene
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Hollow Zn/Co ZIF Particles Derived from Core-Shell ZIF-67@ZIF-8 as Selective Catalyst for the Semi-Hydrogenation of Acetylene

机译:核壳ZIF-67 @ ZIF-8衍生的空心Zn / Co ZIF颗粒作为乙炔半加氢的选择性催化剂

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摘要

The rational design of metal-organic frameworks (MOFs) with hollow features and tunable porosity at the nanoscale can enhance their intrinsic properties and stimulates increasing attentions. In this Communication, we demonstrate that methanol can affect the coordination mode of ZIF-67 in the presence of Co2+ and induces a mild phase transformation under solvothermal conditions. By applying this transformation process to the ZIF-67@ZIF-8 core-shell structures, a well-defined hollow Zn/Co ZIF rhombic dodecahedron can be obtained. The manufacturing of hollow MOFs enables us to prepare a noblemetal@MOF yolk-shell composite with controlled spatial distribution and morphology. The enhanced gas storage and porous confinement that originate from the hollow interior and coating of ZIF-8 confers this unique catalyst with superior activity and selectivity toward the semi-hydrogenation of acetylene.
机译:具有中空特征和纳米级可调孔隙率的金属有机骨架(MOF)的合理设计可以增强其固有特性并引起越来越多的关注。在本交流中,我们证明了甲醇可以在存在Co2 +的情况下影响ZIF-67的配位模式,并在溶剂热条件下诱导温和的相变。通过将这种转变过程应用于ZIF-67 @ ZIF-8核-壳结构,可以获得定义明确的中空Zn / Co ZIF菱形十二面体。中空MOF的制造使我们能够制备具有可控的空间分布和形态的Noblemetal @ MOF卵黄壳复合材料。 ZIF-8的中空内部和涂层增强了气体储存和多孔限制,使这种独特的催化剂具有出色的活性和对乙炔半加氢的选择性。

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