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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Proton-Coupled Electron Transfer and Substituent Effects in Catechol-Based Deep Eutectic Solvents: Gross and Fine Tuning of Redox Activity
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Proton-Coupled Electron Transfer and Substituent Effects in Catechol-Based Deep Eutectic Solvents: Gross and Fine Tuning of Redox Activity

机译:质子偶联电子转移和基于儿茶酚的深凝胶溶剂的取代基:氧化还原活动的粗略调整

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摘要

The 1,2-diol moiety in a variety of substituted catechols allows formation of room temperature ionic melts in a 2:1 ratio with choline chloride or choline dihydrogen citrate. These deep eutectic solvents were 4.3-6.6 M in redox active catechols. Substituents on 3- and 4-substituted catechols shift both E degrees and pK(a) such that Hammett parameters predict the observed E-p for oxidation in square wave voltammetry. The proton acceptor for the proton-coupled oxidation shifts the observed Ep more strongly than the substituents within the substituents and acceptors reported here. The shift is predicted well by the pK(a) of the conjugate acid of the proton acceptor, i.e., water in aqueous solutions or chloride or dihydrogen citrate in the DESs in this study. Together, the substituent and the proton acceptor allow gross and fine-tuning of the oxidation potential for catechol over 750 mV, the first demonstration of control of the thermodynamics of proton-coupled electron transfer in deep eutectic solvents. Changing the substituents on the HBD affords fine control in tens of millivolts, while changing the base strength of the anion of the organic salt affords gross control across hundreds of millivolts.
机译:在各种取代的儿茶酚的1,2-二醇结构部分允许在2形成室温离子熔体:1的比例与氯化胆碱或胆碱柠檬酸二氢盐。这些共晶深溶剂是4.3-6.6 M在氧化还原活性的儿茶酚。上3-和4-取代的儿茶酚类取代基移位两者Ë度和PK(a)中,使得哈米特参数预测观察到的E-p表示在方波伏安法的氧化。为取代基和受体中的质子耦合氧化移位所观察到的EP比更强烈的取代基的质子受体这里报告。换档是深受质子受体的共轭酸的pK(a)中,即预测,水在水性溶液中或在本研究中,加入戴斯氯化物或柠檬酸二氢。在一起,取代基和质子受体允许儿茶酚超过750毫伏,在深共晶的溶剂质子偶联的电子传递的热力学控制的第一个示范的氧化电势的总值和微调。在几十毫伏的HBD得到精细控制改变的取代基,而改变有机盐的阴离子的碱强度,得到在数百毫伏的总量控制。

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