首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >An Aqueous Conducting Redox‐Polymer‐Based Proton Battery that Can Withstand Rapid Constant‐Voltage Charging and Sub‐Zero Temperatures
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An Aqueous Conducting Redox‐Polymer‐Based Proton Battery that Can Withstand Rapid Constant‐Voltage Charging and Sub‐Zero Temperatures

机译:基于水的氧化还原聚合物质子电池可承受快速恒压充电和零以下温度

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摘要

Electrodes based on organic matter operating in aqueous electrolytes enable new approaches and technologies for assembling and utilizing batteries that are difficult to achieve with traditional electrode materials. Here, we report how thiophene‐based trimeric structures with naphthoquinone or hydroquinone redox‐active pendent groups can be processed in solution, deposited, dried and subsequently polymerized in solid state to form conductive (redox) polymer layers without any additives. Such post‐deposition polymerization offers efficient use of material, high mass loading (up to 10 mg cm ) and good flexibility in the choice of substrate and coating method. By employing these materials as anode and cathode in an acidic aqueous electrolyte a rocking‐chair proton battery is built. The battery shows good cycling stability (85 % after 500 cycles), withstands rapid charging, with full capacity (60 mAh g ) reached within 100 seconds, allows for direct integration with photovoltaics, and retains its favorable characteristics even at −24 °C.
机译:基于在水电解质中运行的基于有机物质的电极,为组装和利用传统电极材料难以实现的电池提供了新的方法和技术。在这里,我们报告了具有萘醌或对苯二酚氧化还原活性侧基的基于噻吩的三聚体结构如何在溶液中进行处理,沉积,干燥并随后以固态聚合形成导电(氧化还原)聚合物层而无任何添加剂。这种沉积后聚合可有效利用材料,高质量负载(最大10μg/ cm 2),并在选择基材和涂覆方法时具有良好的灵活性。通过将这些材料用作酸性含水电解质中的阳极和阴极,可以制造摇椅质子电池。该电池显示出良好的循环稳定性(500次循环后为85%),可承受快速充电,并在100微秒内达到满电量(60 mAh g),可与光伏直接集成,即使在−24 C时仍保持其良好的特性。

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