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Review on High-Loading and High-Energy Lithium-Sulfur Batteries

机译:高负荷高能锂硫电池研究进展

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Owing to high specific energy, low cost, and environmental friendliness, lithium-sulfur (Li-S) batteries hold great promise to meet the increasing demand for advanced energy storage beyond portable electronics, and to mitigate environmental problems. However, the application of Li-S batteries is challenged by several obstacles, including their short life and low sulfur utilization, which become more serious when sulfur loading is increased to the practically accepted level above 3-5 mg cm(-2). More and more efforts have been made recently to overcome the barriers toward commercially viable Li-S batteries with a high sulfur loading. This review highlights the recent progress in high-sulfur-loading Li-S batteries enabled by hierarchical design principles at multiscale. Particularly, basic insights into the interfacial reactions, strategies for mesoscale assembly, unique architectures, and configurational innovation in the cathode, anode, and separator are under specific concerns. Hierarchy in the multiscale design is proposed to guide the future development of high-sulfur-loading Li-S batteries.
机译:由于高比能量,低成本和环境友好性,锂硫(Li-S)电池有望满足除便携式电子产品以外对高级储能的日益增长的需求,并减轻环境问题。但是,Li-S电池的应用面临一些障碍的挑战,包括它们的寿命短和硫的利用率低,当硫负载增加到3-5 mg cm(-2)的实际可接受水平时,这将变得更加严重。近来,人们进行了越来越多的努力来克服高硫负载商业上可行的Li-S电池的障碍。这篇综述着重介绍了通过多尺度分层设计原则实现的高硫负载锂硫电池的最新进展。特别是,对界面反应的基本见解,中等规模组装的策略,独特的体系结构以及阴极,阳极和隔板的结构创新受到了特殊关注。提出了多尺度设计中的层次结构,以指导高硫载Li-S电池的未来发展。

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