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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >On the Generation of Hot-Spots by Microwave Electric and Magnetic Fields and Their Impact on a Microwave-Assisted Heterogeneous Reaction in the Presence of Metallic Pd Nanoparticles on an Activated Carbon Support
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On the Generation of Hot-Spots by Microwave Electric and Magnetic Fields and Their Impact on a Microwave-Assisted Heterogeneous Reaction in the Presence of Metallic Pd Nanoparticles on an Activated Carbon Support

机译:活性炭载体上金属钯纳米粒子存在下微波电场和磁场引起的热点及其对微波辅助异相反应的影响

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This article examines the generation of hot-spots and their impact in the heterogeneous Suzuki—Miyaura coupling reaction for the synthesis of 4-methylbiphenyl in toluene solvent in the presence of Pd/AC. Hot-spots easily formed on the surface of the activated carbon (AC) catalyst support under high electric field conditions; they were recorded in real time using a high-speed camera. Chemical yields of 4-methylbiphenyl under the microwaves' magnetic field (H-field) were 2-fold greater than those under electric field (E-field) conditions at identical temperatures and reaction times (120 min). Microwave E-field irradiation with a high accuracy device enhanced generation of hot-spots. Excessive formation of hot-spots impacted negatively on this coupling reaction.
机译:本文探讨了在Pd / AC存在下,甲苯溶剂中4-甲基联苯合成中异质Suzuki-Miyaura偶联反应中热点的产生及其影响。在高电场条件下,活性炭(AC)催化剂载体表面上容易形成热点;使用高速摄像机实时记录它们。在相同的温度和反应时间(120分钟)下,微波磁场(H场)下4-甲基联苯的化学产率比电场(电场)下的化学产率高两倍。具有高精度设备的微波电场辐照增强了热点的产生。热点的过度形成对该偶联反应产生负面影响。

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