Institute for Superconducting and Electronic Materials, University of Wollongong, Wollongong, 2500, Australia.
School of Physics and Electronics, Hunan University, Changsha, 410082, China.
Adv Mater. 2017 Jul;29(28). doi: 10.1002/adma.201606454. Epub 2017 May 10.
Recent advances and achievements in emerging Li-X (X = O , S, Se, Te, I , Br ) batteries with promising cathode materials open up new opportunities for the development of high-performance lithium-ion battery alternatives. In this review, we focus on an overview of recent important progress in the design of advanced cathode materials and battery models for developing high-performance Li-X (X = O , S, Se, Te, I , Br ) batteries. We start with a brief introduction to explain why Li-X batteries are important for future renewable energy devices. Then, we summarize the existing drawbacks, major progress and emerging challenges in the development of cathode materials for Li-O (S) batteries. In terms of the emerging Li-X (Se, Te, I , Br ) batteries, we systematically summarize their advantages/disadvantages and recent progress. Specifically, we review the electrochemical performance of Li-Se (Te) batteries using carbonate-/ether-based electrolytes, made with different electrode fabrication techniques, and of Li-I (Br ) batteries with various cell designs (e.g., dual electrolyte, all-organic electrolyte, with/without cathode-flow mode, and fuel cell/solar cell integration). Finally, the perspective on and challenges for the development of cathode materials for the promising Li-X (X = O , S, Se, Te, I , Br ) batteries is presented.
新兴的 Li-X(X=O、S、Se、Te、I、Br)电池的最新进展和成就,以及有前途的阴极材料,为开发高性能锂离子电池替代品开辟了新的机会。在这篇综述中,我们专注于介绍设计先进阴极材料和电池模型的最新重要进展,以开发高性能 Li-X(X=O、S、Se、Te、I、Br)电池。我们首先简要介绍一下为什么 Li-X 电池对未来的可再生能源设备很重要。然后,我们总结了 Li-O(S)电池阴极材料发展中存在的缺点、主要进展和新出现的挑战。对于新兴的 Li-X(Se、Te、I、Br)电池,我们系统地总结了它们的优缺点和最新进展。具体来说,我们综述了使用碳酸盐/醚基电解质的 Li-Se(Te)电池的电化学性能,采用了不同的电极制造技术,以及具有各种电池设计的 Li-I(Br)电池(例如,双电解质、全有机电解质、有无阴极流动模式、燃料电池/太阳能电池集成)。最后,对有前途的 Li-X(X=O、S、Se、Te、I、Br)电池的阴极材料的发展前景和挑战进行了展望。