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Metal–Organic Framework-Derived Strategy for Improving Catalytic Performance of a Chromia-Based Catalyst in the Chlorine/Fluorine Exchange Reactions for Unsaturated Fluorocarbons

机译:用于提高氯/氟交换反应中的氯/氟交换反应中催化性能的金属 - 有机骨架衍生策略

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Hydrofluoroolefins (HFOs) and cyclic hydrofluorocarbons (c-HFCs) have been the most favored alternatives of the ozone depletion substances; however, because of the poor performance of the present chlorine/fluorine (Cl/F) exchange catalysts, the development and production of HFOs and c-HFCs are hindered. Here, we first report a novel and facile route to fabricate high-performance Cl/F exchange catalysts via a metal–organic framework (MOF) carbonization method. The MOF-derived catalyst not only has high selectivity but also can significantly lower the reaction temperature. Moreover, benefiting from the stable structure and coke-inhibiting ability, the MOF-derived catalyst has a long service life compared with the traditional precipitation method. Furthermore, the nanoscopic MOF-derived catalyst can greatly reduce the Cr dosage, which would help to minimize the risk of Cr contamination.
机译:氢氟烯烃(HFO)和环状氢氟烃(C-HFC)是臭氧耗尽物质最有利的替代品;然而,由于本发明的氯/氟(Cl / F)交换催化剂的性能差,妨碍了HFOS和C-HFC的显影和生产。在这里,我们首先通过金属 - 有机框架(MOF)碳化方法来报告一种新颖的和容易的途径来制造高性能Cl / F换催化剂。 MOF衍生的催化剂不仅具有高选择性,而且可以显着降低反应温度。此外,从稳定的结构和焦炭抑制能力中受益于稳定的结构,与传统的沉淀法相比,MOF衍生的催化剂具有长的使用寿命。此外,纳米镜MOF衍生的催化剂可以大大减少CR剂量,这将有助于最小化Cr污染的风险。

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