4.8 Review

An Emerging Energy Storage System: Advanced Na-Se Batteries

期刊

ACS NANO
卷 15, 期 4, 页码 5876-5903

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.0c10078

关键词

sodium-selenium batteries; cathode materials design; challenges; strategies; electrochemical mechanism; sodium storage technology; carbonaceous materials; energy storage

资金

  1. National Key Research and Development Program of China [2019YFB2203400]
  2. 111 Project [B20030]
  3. UESTC Shared Research Facilities of Electromagnetic Wave and Matter Interaction [Y0301901290100201]

向作者/读者索取更多资源

Sodium-selenium (Na-Se) batteries have attracted significant attention due to the large abundance of sodium and the high electronic conductivity and volumetric capacity of selenium. Major advancements have been made in electrode materials design, particularly in Se-based cathode materials. The challenges and strategies for improving the electrochemical performance of Na-Se batteries have been systematically summarized and discussed.
Sodium-selenium (Na-Se) batteries have aroused enormous attention due to the large abundance of the element sodium as well as the high electronic conductivity and volumetric capacity of selenium. In this battery system, some primary advances in electrode materials have been achieved, mainly involving the design of Se-based cathode materials. In this Review, the electrochemical mechanism is discussed, thus revealing the main challenges in Na-Se batteries. Then, the advances in the design of Se-based cathode materials for Na-ion storage are systemically summarized, classified, and discussed, including Se/carbon composite, Se/polar material/carbon composites, and hybrid SexSy alloys. Some potential strategies enabling the improvement of crucial challenges and enhancement of electrochemical performance are also proposed to provide guidelines for the enhancements of Na-ion storage. An outlook for future valuable research directions is proposed to understand more deeply the electrochemical mechanism of Na-Se batteries and promote their further developments in full cell performance and commercialization.

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