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The use of palladium nanoparticles supported with MCM-41 and basic (Al)MCM-41 mesoporous sieves in microwave-assisted Heck reaction

机译:MCM-41和碱性(Al)MCM-41介孔筛负载的钯纳米粒子在微波辅助Heck反应中的应用

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摘要

A series of supported catalysts has been obtained by grafting of chemically generated palladium nanoparticles onto basic, Cs~+ ion-exchanged molecular sieves (Al)MCM-41 and onto the non-basic, parent material MCM-41. Catalytic activity of the catalysts has been investigated in the Heck reaction between bromobenzene and butyl acrylate under microwave irradiation. The activity of the bifunctional catalysts (Pd@Cs~+-(Al)MCM-41) and the activity of Pd@MCM-41 combined with sodium acetate as an external base were considerably higher under microwave irradiation than activities observed for the same catalytic systems under the conventional heating. The Pd@MCM-41/NaOAc system showed higher conversions than the bifunctional catalysts presumably due to a different nature and accessible amount of the base. On the other hand, microwave irradiation seems to increase the rate of aggregation of the metallic particles and thus also catalyst deactivation as compared with the usual heating.
机译:通过将化学生成的钯纳米粒子接枝到碱性Cs +离子交换分子筛(Al)MCM-41和非碱性母体材料MCM-41上,可以获得一系列负载型催化剂。已经在微波辐射下在溴苯和丙烯酸丁酯之间的Heck反应中研究了催化剂的催化活性。在微波辐射下,双功能催化剂(Pd @ Cs〜+-((Al)MCM-41)的活性和Pd @ MCM-41与乙酸钠结合作为外部碱的活性比在相同催化剂下观察到的活性高得多。系统在常规加热下。 Pd @ MCM-41 / NaOAc系统显示出比双功能催化剂更高的转化率,推测是由于碱的性质和可及量不同。另一方面,与常规加热相比,微波辐射似乎增加了金属颗粒的聚集速率,因此也使催化剂失活。

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