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Gas reactions under intrapore condensation regime within tailored metal–organic framework catalysts

机译:量身定制的金属-有机骨架催化剂在孔内冷凝条件下的气体反应

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摘要

Production of 1-butene, a major monomer in polymer industry, is dominated by homogeneous protocols via ethylene dimerization. Homogeneous catalysts can achieve high selectivity but require large amounts of activators and solvents, and exhibit poor recyclability; in turn, heterogeneous systems are robust but lack selectivity. Here we show how the precise engineering of metal–organic frameworks (MOFs) holds promise for a sustainable process. The key to the (Ru)HKUST-1 MOF activity is the intrapore reactant condensation that enhances ethylene dimerization with high selectivity (> 99% 1-butene) and high stability (> 120 h) in the absence of activators and solvents. According to spectroscopy, kinetics, and modeling, the engineering of defective nodes via controlled thermal approaches rules the activity, while intrapore ethylene condensation accounts for selectivity and stability. The combination of well-defined actives sites with the concentration effect arising from condensation regimes paves the way toward the development of robust MOF catalysts for diverse gas-phase reactions.
机译:1-丁烯是聚合物工业中的主要单体,其生产主要通过乙烯二聚的均相方案进行。均相催化剂可以实现高选择性,但需要大量的活化剂和溶剂,并且循环利用性差。反过来,异构系统则很健壮,但缺乏选择性。在这里,我们展示了金属有机框架(MOF)的精确工程如何为可持续过程带来希望。 (Ru)HKUST-1 MOF活性的关键是孔内反应物缩合,可在没有活化剂和溶剂的情况下以高选择性(> 99%1-丁烯)和高稳定性(> 120 h)增强乙烯二聚作用。根据光谱学,动力学和建模,通过受控的热方法对有缺陷的节点进行工程控制活性,而孔内乙烯缩合则说明了选择性和稳定性。明确定义的活性位点与缩合方案引起的浓度效应的结合为开发用于各种气相反应的稳健MOF催化剂铺平了道路。

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