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Evaluation of a Nonresonant Microwave Applicator for Continuous-Flow Chemistry Applications

机译:用于连续流化学应用的非共振微波辐射器的评估

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The concept of a nonresonant microwave applicator for continuous-flow organic chemistry is introduced and evaluated. The frequency of the incident microwave radiation can be adjusted between 2.4 and 2.5 GHz to optimize the energy absorbance. The temperature of the reaction is monitored by five IR sensors, and their signals can be used to automatically adjust the power output from the microwave generator. The heating of several different solvents up to 20 °C above the standard boiling point has been explored. Several different organic reactions have been successfully carried out using a 200 mm X (J) 3 mm tubular borosilicate reactor and a flow between 47 and 2120 μL/min. The microwave heating pattern was visualized with an IR camera. The transformations include palladium-catalyzed coupling reactions (oxidative Heck and Suzuki reactions), heterocyclic chemistry (oxathiazolone and Fischer indole synthesis), rearrangement (Claisen), and a Diels—Alder cycloaddition reaction. A scale-out to 57 mmol/h was performed with the Fischer indole reaction.
机译:介绍并评估了用于连续流有机化学的非共振微波辐射器的概念。可以在2.4至2.5 GHz之间调节入射微波辐射的频率,以优化能量吸收率。反应温度由五个红外传感器监控,它们的信号可用于自动调节微波发生器的功率输出。已经探索了将几种不同的溶剂加热到比标准沸点高20°C的温度。使用200 mm X(J)3 mm管式硼硅酸盐反应器并在47至2120μL/ min的流速下成功进行了几种不同的有机反应。微波加热模式用红外摄像机观察。转化包括钯催化的偶联反应(氧化性Heck和Suzuki反应),杂环化学(恶二唑酮和菲舍尔吲哚合成),重排(克莱森)和Diels-Alder环加成反应。用Fischer吲哚反应进行的横向放大至57 mmol / h。

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