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A rechargeable battery based on hydrophilic radical polymer electrode and its green assessment

机译:基于亲水性自由基聚合物电极的可充电电池及其绿色评估

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A hydrophilic radical polymer electrode-based rechargeable battery was designed along the concept of green chemistry. A hydrophilic radical polymer, poly(2,2,6,6-tetramethylpiperidinyloxy-4-yl vinylether), was synthesized as an electrode-active material; its battery demonstrated a high charging–discharging rate and long cycle life. The combination of the hydrophilic polymer electrode and an aqueous electrolyte for the battery fabrication was expected to provide safety improvements such as a low ignition risk besides the high battery performance. The green characteristics were studied using the “i-Messe,” an evaluation method proposed by the committee of the Green Sustainable Chemistry Network, Japan. The electrode-active polymer was evaluated for substantial improvements in disaster safety and health safety.
机译:基于绿色化学概念设计了基于亲水性自由基聚合物电极的可充电电池。合成了一种亲水性自由基聚合物,聚(2,2,6,6-四甲基哌啶基氧基-4-基乙烯基醚)作为电极活性材料。它的电池具有很高的充放电速率和长循环寿命。期望用于电池制造的亲水性聚合物电极和水性电解质的组合除了提供高电池性能之外,还可以提供安全性改进,例如低着火风险。使用“ i-Messe”研究了绿色特性,“ i-Messe”是日本绿色可持续化学网络委员会提出的一种评估方法。评估了电极活性聚合物在灾难安全和健康安全方面的实质性改进。

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