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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Impact of electrolyte composition on the reactivity of a redox active polymer studied through surface interrogation and ion-sensitive scanning electrochemical microscopy
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Impact of electrolyte composition on the reactivity of a redox active polymer studied through surface interrogation and ion-sensitive scanning electrochemical microscopy

机译:通过表面询问和离子敏感扫描电化学显微镜研究了电解质成分对氧化还原活性聚合物反应性的影响

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摘要

Elucidating the impact of interactions between the electrolyte and electroactive species in redox active polymers is key to designing better-performing electrodes for electrochemical energy storage and conversion. Here, we present on the improvement of the electrochemical activity of poly(para-nitrostyrene) (PNS) in solution and as a film by exploiting the ionic interactions between reduced PNS and K+, which showed increased reactivity when compared to tetrabutylammonium (TBA(+))- and Li+-containing electrolytes. While cyclic voltammetry enabled the study of the effects of cations on the electrochemical reversibility and the reduction potential of PNS, scanning electrochemical microscopy (SECM) provided new tools to probe the ionic and redox reactivity of this system. Using an ion-sensitive Hg SECM tip allowed to probe the ingress of ions into PNS redox active films, while surface interrogation SECM (SI-SECM) measured the specific kinetics of PNS and a solution phase mediator in the presence of the tested electrolytes. SI-SECM measurements illustrated that the interrogation kinetics of PNS in the presence of K+ compared to TBA(+) and Li+ are greatly enhanced under the same surface concentration of adsorbed radical anion, exhibiting up to a 40-fold change in redox kinetics. We foresee using this new application of SECM methods for elucidating optimal interactions that enhance polymer reactivity for applications in redox flow batteries.
机译:阐明氧化还原活性聚合物中电解质与电活性物质之间相互作用的影响是设计性能更好的电极以进行电化学能量存储和转换的关键。在这里,我们介绍了通过利用还原的PNS和K +之间的离子相互作用改善溶液中和薄膜形式的聚对硝基苯乙烯(PNS)的电化学活性,与四丁基铵(TBA(+ ))和含Li +的电解质。循环伏安法可以研究阳离子对PNS电化学可逆性和还原电位的影响,而扫描电化学显微镜(SECM)提供了新的工具来探测该系统的离子和氧化还原反应性。使用离子敏感的汞SECM尖端可以探测离子进入PNS氧化还原活性膜,同时表面询问SECM(SI-SECM)在存在测试电解质的情况下测量PNS和溶液相介体的比动力学。 SI-SECM测量结果表明,在相同的吸附自由基阴离子表面浓度下,与TBA(+)和Li +相比,在K +存在下PNS的询问动力学大大增强,氧化还原动力学表现出高达40倍的变化。我们预见将使用SECM方法的这一新应用来阐明优化相互作用,从而增强聚合物在氧化还原液流电池中的反应性。

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