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首页> 外文期刊>Electrochimica Acta >In situ electrochemical oxidation of ethylenediamine on Co-B alloy electrode during cycling for improving its electrochemical properties at elevated temperature
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In situ electrochemical oxidation of ethylenediamine on Co-B alloy electrode during cycling for improving its electrochemical properties at elevated temperature

机译:乙二胺在循环过程中在Co-B合金电极上进行原位电化学氧化,以改善其在高温下的电化学性能

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摘要

A Co-B alloy/ethylenediamine (EDA) hybrid electrode system has been developed by adding EDA into electrolyte. Charge-discharge measurements show that the inorganic-organic hybrid electrode system exhibits high discharge capacity and long cycle life at elevated temperature (55℃). Specifically, in the electrolyte containing 0.09 M EDA additive, the discharge capacity of Co-B alloy electrode after 100 cycles is still up to 601.7 m Ah g~(-1) at 55℃. However, for the electrode in EDA-free electrolyte, its discharge capacity is sharply decreased to only 138.5 m Ah g~(-1) after 100 cycles. ICP-OES and IR measurements are used to clarify the reason of the improvement in the electrochemical properties. These results show that beneficial effect of EDA on electrochemical properties of Co-B alloy electrode can be attributed to in situ electrochemical oxidation of EDA during discharge cycles. First the oxidation of EDA contributes to part of the discharge capacity and secondly the oxidation products absorbed on the electrode may help to suppress the dissolution of Co at elevated temperature. Evidence is presented suggesting that the oxidation of Co can induce co-oxidation of EDA.
机译:通过将EDA添加到电解质中,已开发出Co-B合金/乙二胺(EDA)混合电极系统。充放电测试表明,无机-有机混合电极体系在高温(55℃)下表现出高的放电容量和长的循环寿命。具体地,在含有0.09M EDA添加剂的电解质中,在55℃下,Co-B合金电极在100次循环后的放电容量仍然高达601.7m Ah g〜(-1)。但是,对于无EDA电解液的电极,经过100个循环后其放电容量急剧下降至仅138.5 m Ah g〜(-1)。 ICP-OES和IR测量用于阐明电化学性能改善的原因。这些结果表明,EDA对Co-B合金电极的电化学性能的有益作用可归因于放电循环过程中EDA的原位电化学氧化。首先,EDA的氧化贡献了部分放电容量,其次,电极上吸收的氧化产物可能有助于抑制高温下Co的溶解。证据表明,Co的氧化可诱导EDA的共氧化。

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