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Microwave-Assisted Cross-Coupling and Hydrogenation Chemistry by Using Heterogeneous Transition-Metal Catalysts: An Evaluation of the Role of Selective Catalyst Heating

机译:非均相过渡金属催化剂的微波辅助交叉偶联和加氢化学:选择性催化剂加热作用的评价

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摘要

The concept of specific microwave effects in solid/liquid catalytic processes resulting from the selective heating of a microwave-absorbing heterogeneous transition-metal catalyst by using 2.45 GHz microwave irradiation was evaluated. As model transformations Ni/C-, Cu/C-, Pd/C-, and Pd/Al2O3-catalyzed carbon-carbon/carbon-heteroatom cross-couplings and hydrogenation reactions were investigated. To probe the existence of specific microwave effects by means of selective catalyst heating in these transformations, control experiments comparing microwave dielectric heating and conventional thermal heating at the same reaction temperature were performed. Although the supported metal catalysts were experimentally found to be strongly microwave absorbing, for all chemistry examples investigated herein no differences in reaction rate or selectivity between microwave and conventional heating experiments under carefully controlled conditions were observed. This was true also for reactions that use low-absorbing or microwave transparent solvents, and was independent of the microwave absorbtivity of the catalyst support material. In the case of hydrogenation reactions, the stirring speed was found to be a critical factor on the mass transfer between gas and liquid phase, influencing the rate of the hydrogenation in both microwave and conventionally heated experiments.
机译:对通过使用2.45 GHz微波辐射选择性加热吸收微波的非均相过渡金属催化剂而产生的固/液催化过程中特定微波效应的概念进行了评估。作为模型转换,研究了Ni / C-,Cu / C-,Pd / C-和Pd / Al2O3-催化的碳-碳/碳-杂原子交叉偶联和氢化反应。为了通过在这些转化中通过选择性催化剂加热来探测特定微波效应的存在,进行了在相同反应温度下比较微波介电加热和常规热加热的对照实验。尽管通过实验发现负载的金属催化剂对微波的吸收很强,但是对于本文研究的所有化学实例,在精心控制的条件下,微波与常规加热实验之间没有观察到反应速率或选择性的差异。对于使用低吸收性或微波透明溶剂的反应也是如此,并且与催化剂载体材料的微波吸收率无关。在氢化反应的情况下,发现搅拌速度是影响气相和液相之间的传质的关键因素,在微波和常规加热的实验中,氢化速度都会受到影响。

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