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Novel electrochemical capacitors with high-energy density using intercalated metal-organic framework electrodes

机译:具有闭合金属 - 有机框架电极的高能量密度的新型电化学电容器

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The energy-density improvement of capacitors while maintaining high power, long-term-cycle stability and safety is challenging. Asymmetric capacitors using non-faradaic and intercalation electrodes are proposed in order to achieve this. However the reported asymmetric capacitors with graphite-based negative electrode have a safety risk, which is an internal short circuit due to Li deposition when further high-energy density is performed. Here asymmetric capacitors consisting of intercalated metal-organic frameworks (iMOFs) negative operating potential range of 0.5-1.0 V vs. Li/Li+ that enable Li deposition reduction and activated carbon positive electrodes is proposed to construct a high volumetric energy (ca. 60 Wh L-1) and power densities with safety.
机译:电容器的能量密度改进,同时保持高功率,长期循环稳定性和安全性是具有挑战性的。提出了使用非法和插入电极的不对称电容器以实现这一点。然而,报告的具有基于石墨的负电极的不对称电容器具有安全风险,这是由于在进行进一步高能量密度时引起的内部短路由于LI沉积。这里,由插入金属 - 有机框架(IMOF)组成的不对称电容器,负操作电位范围为0.5-1.0V与Li / Li +,所以提出了Li / Li +的Li / Li +,提出了Li沉积和活性炭正电极,构建高容量能量(CA. 60WH L-1)和安全密度安全。

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