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Polymer electrolytes integrated with ionic liquids for future electrochemical devices

机译:与离子液体集成的聚合物电解质,可用于未来的电化学设备

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摘要

The global energy crisis and an increase in environmental pollution in the recent years have drawn the attention of the scientific community towards the development of efficient electrochemical devices. Polymers containing charged species have the potential to serve as electrolytes in next-generation devices and achieving high ion transport properties in these electrolytes is the key to improving their efficiency. In this article, we explore ways to improve the ion transport properties of solid polymer electrolytes by focusing on the use of ionic liquids (ILs). The application of IL-incorporated polymer electrolytes in lithium batteries, high temperature fuel cells, and electro-active actuators is summarized. For each system, the current level of understanding of the diverse factors affecting the transport properties of polymer electrolytes integrated with ILs is presented, in addition to the challenges encountered and strategies toward obtaining significantly improved device performances. The creation of self-assembled morphologies in IL-containing polymer electrolytes by the use of block copolymers is particularly highlighted as a novel prospective technique geared towards obtaining next-generation electrochemical devices with enhanced performances.
机译:近年来,全球能源危机和环境污染的加剧已引起科学界对开发高效电化学装置的关注。包含带电物质的聚合物有潜力在下一代设备中用作电解质,而在这些电解质中实现高离子传输性能是提高其效率的关键。在本文中,我们将重点研究离子液体(IL)的使用,从而探索改善固体聚合物电解质的离子传输性能的方法。总结了掺有IL的聚合物电解质在锂电池,高温燃料电池和电激励执行器中的应用。对于每个系统,除了会遇到的挑战和获得显着改善的器件性能的策略外,还介绍了对影响与ILs集成的聚合物电解质的传输性能的各种因素的当前了解。通过使用嵌段共聚物在含IL的聚合物电解质中产生自组装形貌特别突出,这是一种新颖的预期技术,旨在获得性能更高的下一代电化学装置。

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