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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Conducting Polymers for Pseudocapacitive Energy Storage
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Conducting Polymers for Pseudocapacitive Energy Storage

机译:用于伪电容储能的导电聚合物

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Developing energy storage devices to be utilized within a rapidly advancing energy market requires a multipronged approach whereby material synthesis and engineering fundamentals combine to :enable technological advances. These devices should be able to store a large amount of energy in a small, lightweight package, and should be able to distribute that energy quickly for high rate applications. Pseudocapacitors made from conducting polymers, which store charge via rapid reduction and oxidation reactions, are a particularly promising candidate. This perspective explores conductivity and charge storage mechanisms in conducting polymers and describes how synthetic strategies can affect these properties. We further develop chemical correlations that have been shown to enhance the performance of pseudocapacitive electrochemical capacitors fabricated from conducting polymers. Important device engineering strategies for improving the lifetime and applicability of pseudocapacitors are also discussed.
机译:开发要在迅速发展的能源市场中使用的储能设备需要采取多管齐下的方法,在这种方法中,材料合成和工程基础知识必须结合起来以实现技术进步。这些设备应能够在小型轻巧的包装中存储大量能量,并应能够为高速率应用快速分配能量。由导电聚合物制成的伪电容器是一种特别有前途的候选物,其通过快速还原和氧化反应来存储电荷。该观点探讨了导电聚合物中的电导率和电荷存储机制,并描述了合成策略如何影响这些特性。我们进一步开发了化学相关性,这些化学相关性已被证明可以增强由导电聚合物制成的伪电容式电化学电容器的性能。还讨论了改善伪电容器寿命和适用性的重要器件工程策略。

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