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Electrochemical behavior of carbon paper on cerium methanesulfonate electrolytes for zinc-cerium flow battery

机译:碳纸在锌铈液流电池的甲磺酸铈铈电解质上的电化学行为

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The voltammetric behavior of the Ce(III)/(IV) half-cell reaction in various electrolytes containing 0.6MCe was investigated on both pristine and metal-modified carbon paper (CP) electrodes at three different temperatures (25, 40 and 55 degrees C) in order to find the most favorable electrochemical conditions. The pristine CP displayed robust electrochemical performance for up to 200 repetitive CV cycles while the Pt loaded electrode's performance was stable for only 70 cycles, even though the latter exhibited a more reversible behavior, moving from a quasi-reversible to a reversible system (D-ox. = 4.0 x 10 (6)cm(2) s (1) and D-red. = 2.5 x 10 (6) cm(2) s (1)). The In and La metal modified electrodes did not show any improvement with regard to the kinetics or reversibility of the reaction. The addition of 1M H2SO4 to the base electrolyte enhanced the cerium reduction reaction by a factor of 3, (-7.2 x 10 (3)Acm (2)). The highest exchange current densities (j(o)) were achieved at 40 degrees C for the CP-Pt (1 x 10 (3) Acm (2)) attributable to the presence of the catalytic Pt. Elevated temperatures (40 and 55 degrees C) improved D and Delta E-p. while also the mass transport parameters a) dynamic viscosity (similar to 1.5mPa.s) and b) electrolytic conductivity (similar to 265mScm (1)) of the Ce (III)/(IV) half-cell reaction. Overall, pristine CP and to a lesser extent CP-Pt demonstrated good stability with prolonged cycling and kinetics comparable with the ones of Pt and Pt based electrodes. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在原始温度和金属改性碳纸(CP)电极上,在三种不同温度(25、40和55摄氏度)下,研究了含0.6MCe的各种电解质中Ce(III)/(IV)半电池反应的伏安行为),以找到最有利的电化学条件。原始CP在多达200个重复的CV循环中表现出强大的电化学性能,而Pt负载电极的性能仅在70个循环中保持稳定,即使后者表现出更可逆的行为,也从准可逆系统转变为可逆系统(D- ox。= 4.0 x 10(6)cm(2)s(1)和D-red。= 2.5 x 10(6)cm(2)s(1))。 In和La金属修饰的电极在反应动力学或可逆性方面没有显示任何改善。向基础电解质中添加1M H2SO4可将铈还原反应提高3倍(-7.2 x 10(3)Acm(2))。由于催化性Pt的存在,CP-Pt(1 x 10(3)Acm(2))在40摄氏度时达到了最高交换电流密度(j(o))。升高温度(40和55摄氏度)可改善D和Delta E-p。同时还有Ce(III)/(IV)半电池反应的传质参数a)动态粘度(类似于1.5mPa.s)和b)电解电导率(类似于265mScm(1))。总体而言,原始的CP和较小程度的CP-Pt表现出良好的稳定性,与Pt和Pt基电极相比具有更长的循环和动力学。 (C)2014 Elsevier Ltd.保留所有权利。

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