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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Control of microwave-generated hot spots. Part V. Mechanisms of hot-spot generation and aggregation of catalyst in a microwave-assisted reaction in toluene catalyzed by Pd-loaded AC particulates
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Control of microwave-generated hot spots. Part V. Mechanisms of hot-spot generation and aggregation of catalyst in a microwave-assisted reaction in toluene catalyzed by Pd-loaded AC particulates

机译:控制微波产生的热点。第五部分负载钯的AC微粒催化的微波辅助甲苯中反应中热点生成和催化剂聚集的机理

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摘要

Hot spots are generated when carrying out the heterogeneous Suzuki-Miyaura cross coupling reaction for the synthesis of 4-methylbiphenyl in toluene solvent in the presence of Pd/AC catalyst (AC: activated carbon; see for example parts 1-IV~(-1)). Controlling these hot spots could render the microwave-assisted catalyzed reaction more effective. Accordingly, the present article examines the mechanism by which the hot spots are generated through particle aggregation observed by means of a high-speed camera; the influence of particle size was also examined. Moreover, the formation of hot spots within the spatial gap between two AC particles was simulated by an electromagnetic field analysis and subsequently evidenced experimentally. The heterogeneous Suzuki-Miyaura coupling reaction for the synthesis of 4-methylbiphenyl in toluene solvent in the presence of activated carbon (AC; no Pd) under microwave irradiation has been re-visited to ascertain what the effect of the reagents might be as to whether or not hot spots are formed. The presence of the reagents used in the synthesis of 4-methylbiphenyl did cause a firm connectivity between the activated carbon particles, which changed with the directions of the electric field and the magnetic field. The relationship between the generation of by-products and the formation of hot spots has also been considered in the synthesis of 4-methylbiphenyl in toluene solvent catalyzed by Pd/AC.
机译:在Pd / AC催化剂(AC:活性炭;参见例如1-IV〜(-1)部分)下,在甲苯溶剂中进行多相Suzuki-Miyaura交叉偶联反应以合成4-甲基联苯时,会产生热点))。控制这些热点可以使微波催化的反应更有效。因此,本文研究了通过高速相机观察到的颗粒聚集产生热点的机理。还考察了粒径的影响。此外,通过电磁场分析模拟了两个AC粒子之间的空间间隙内热点的形成,随后通过实验证明了这一点。重新考察了在微波辐射下在活性炭(AC;无Pd)存在下在甲苯溶剂中合成4-甲基联苯的异质Suzuki-Miyaura偶联反应,以确定试剂的作用如何。是否形成热点。用于合成4-甲基联苯的试剂的存在确实引起了活性炭颗粒之间的牢固连接,该连接随电场和磁场的方向而改变。在Pd / AC催化的甲苯溶剂中4-甲基联苯的合成中,也考虑了副产物的生成与热点的形成之间的关系。

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