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Monitoring solid phase synthesis reactions with electrochemical impedance spectroscopy (EIS)

机译:使用电化学阻抗谱(EIS)监控固相合成反应

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This work describes the use of electrochemical impedance spectroscopy (EIS) as a means to monitor solid phase synthesis on resin beads. EIS was used to track changes during the swelling of beads in various solvents, during three typical reactions and throughout cleavage of the final product from the bead. The impedance response was investigated in a chemical reactor and was found to be faintly sensitive to the resin swelling and solvent flow. The position of the electrode within the reactor was found to be critical as polystyrene based beads float or sink dependent upon the solvent used. However, by choosing electrode position it was possible to monitor reaction progress on beads or within the bulk reactant/product mixture. Of the three typical chemical reactions studied impedance spectroscopy successfully followed two. Fitting of the impedance data to an equivalent electrical circuit provided an estimate as to the relative contribution of capacitive and resistive components to the overall response. Kinetic data from two reactions were also modelled, in both cases complex kinetics was observed, in close agreement with other studies. [References: 11]
机译:这项工作描述了使用电化学阻抗谱(EIS)作为监测树脂珠粒上固相合成的手段。 EIS用于跟踪珠在各种溶剂中的溶胀过程中,三个典型的反应过程中以及最终产物从珠中的裂解过程中的变化。在化学反应器中研究了阻抗响应,发现它对树脂溶胀和溶剂流动微弱敏感。发现电极在反应器内的位置是关键的,因为基于聚苯乙烯的珠粒漂浮或沉没取决于所使用的溶剂。但是,通过选择电极位置,可以监控珠子上或本体反应物/产物混合物中的反应进程。在研究的三个典型化学反应中,阻抗谱成功地跟随了两个。将阻抗数据拟合到等效电路可以估算出电容和电阻组件对整体响应的相对贡献。还对两个反应的动力学数据进行了建模,在两种情况下均观察到了复杂的动力学,与其他研究密切相关。 [参考:11]

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