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作 者:罗妹 陈泓钢 邹应萍[1] LUO Mei;CHEN Hong-gang;ZOU Ying-ping(College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China)
出 处:《湖南师范大学自然科学学报》2019年第1期55-63,共9页Journal of Natural Science of Hunan Normal University
基 金:湖南省杰出青年基金资助项目(2017JJ1029)
摘 要:与无机电极材料相比,有机电极材料因为具有结构可设计、资源可再生以及成本低廉等特性,被视为具有前景的电化学储能材料。有机化合物电极材料主要包括含共轭羰基类化合物、含硫有机化合物以及氮氧自由基化合物等。本文主要概括了现阶段用以上三类化合物作为电极材料及其电化学性能所进行的探究,并进一步分析了这三类有机化合物应用在实际的储能电池中所需要的结构和性能上的改进,并进行了展望。Studies of organic electrode materials have attracted enormous attentions in the field of battery electrode materials. Compared with their inorganic counterparts, organic electrode materials are more popular because their structures can be designed, their compositional materials are renewable, their production costs are low, and the organic compounds are environmentally friendly. In this review, recent progresses on the development of organic electrode materials are presented. These organic electrode materials include conjugated carbonyl compounds, sulphur compounds, and compounds with nitrogen oxygen free radicals, etc . Finally, our viewpoints and perspectives on the research of developing future organic electrode materials are discussed.
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