锂离子电池聚合物基材料:结构、材料工程、器件性能和挑战(综述)

Salami Mutiah, H. Louis, Amusan Oluwatobi Omotola, Saud Uz Zafar, T. Magu, Adejoke T. Hamzat, Amos I. Pigweh, O. Akakuru, A. T. Adeleye, B. Ita
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引用次数: 1

摘要

电池是实现能源高效利用的关键手段,是新世纪的重大技术挑战。目前,锂离子电池(LIBs)已成为最重要的储能技术之一。今天的锂离子技术已经征服了便携式电子市场,并仍在快速发展。锂离子技术的成功将在很大程度上取决于成本、安全性、循环寿命、能源和功率,而这些又取决于制造锂离子电池所用的组件材料。因此,本文重点介绍了有机基材料面临的挑战以及与电极材料相关的前景。具体来说,介绍了与有机基电池相关的问题、进展和前景。本文综述了聚合物基锂离子电池材料的基本原理,重点介绍了聚合物基锂离子电池材料在材料设计、挑战、性能和前景方面的最新进展。我们期望这篇综述将激发有机电解质材料和电池作为能量存储装置的电极的进一步改进。其中一些概念依赖于使用生态高效工艺制备电极材料的新方法,使用有机材料而不是无机材料,以克服与其使用相关的环境问题。有机电极对固体电极电池很重要,因为它们可以使设备具有成本效益,允许灵活性,并且还可以使多价离子的使用没有通常与无机化合物相关的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polymer-based Material for Lithium-Ion Batteries: Structure, Material Engineering, Device Performance and Challenges (Review)
Batteries are a major technological challenge in this new century as they are a key method to make use of energy efficiently. Nowadays Lithium-ion batteries (LIBs) appeared to be one of the most important energy storage technologies. Today’s Li-ion technology has conquered the portable electronic markets and still on the track of fast development. The success of lithium-ion technology will depend largely on the cost, safety, cycle life, energy, and power, which are in turn determined by the component materials used for its fabrication. Accordingly, this review focuses on the challenges of organic based materials and prospects associated with the electrode materials. Specifically, the issues associated with organic based batteries, advances and prospects are presented. This review aims to summarize the fundamentals of the polymer-based material for lithium-ion batteries (LIBs) and specifically highlight its recent major advancement in material design, challenges, performance and finally its prospects. We anticipate that this Review will inspire further improvement in organic electrolyte materials and the electrode for the battery as energy device storages. Some of these concepts, relying on new ways to prepare electrode materials by the use of eco-efficient processes, on the use of organic rather than inorganic materials in order to overcome environmental issues associated with their use. Organic electrodes are important for solid electrode batteries because they can make device cost-effective, allow flexibility, and can also enable the use of multivalent ions without the problems typically associated with inorganic compounds.
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