功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2013年
19期
2741-2748
,共8页
郑晓雨%苏方远%杨全红%康飞宇
鄭曉雨%囌方遠%楊全紅%康飛宇
정효우%소방원%양전홍%강비우
石墨烯%锂离子电池%锂硫电池%锂空电池%二次电池
石墨烯%鋰離子電池%鋰硫電池%鋰空電池%二次電池
석묵희%리리자전지%리류전지%리공전지%이차전지
graphene%lithium-ion battery%lithium-sulfur battery%lithium-air battery%rechargeable batteries
能源危机和环境污染不断加剧,开发绿色、高效的电化学储能器件迫在眉睫。由于锂具有很高的能量密度,锂系二次电池包括锂离子电池、锂硫电池和锂空电池等得到广泛研究和快速发展;而碳基材料是锂系二次电池重要的电极材料和关键组分。石墨烯是“至柔至薄”的碳基材料,良好的力学、热学、电学性能以及高比表面积和柔性片状的结构特征使其在锂系二次电池中展示出很大的应用潜力;作为其它 sp2杂化碳基材料的基本结构单元,石墨烯的出现也为构建高性能的新型碳电极材料提供了契机。评述了不同结构形貌的石墨烯基材料在锂系二次电池中的研究进展,并对目前存在的问题和下一步的工作方向进行了分析与展望。
能源危機和環境汙染不斷加劇,開髮綠色、高效的電化學儲能器件迫在眉睫。由于鋰具有很高的能量密度,鋰繫二次電池包括鋰離子電池、鋰硫電池和鋰空電池等得到廣汎研究和快速髮展;而碳基材料是鋰繫二次電池重要的電極材料和關鍵組分。石墨烯是“至柔至薄”的碳基材料,良好的力學、熱學、電學性能以及高比錶麵積和柔性片狀的結構特徵使其在鋰繫二次電池中展示齣很大的應用潛力;作為其它 sp2雜化碳基材料的基本結構單元,石墨烯的齣現也為構建高性能的新型碳電極材料提供瞭契機。評述瞭不同結構形貌的石墨烯基材料在鋰繫二次電池中的研究進展,併對目前存在的問題和下一步的工作方嚮進行瞭分析與展望。
능원위궤화배경오염불단가극,개발록색、고효적전화학저능기건박재미첩。유우리구유흔고적능량밀도,리계이차전지포괄리리자전지、리류전지화리공전지등득도엄범연구화쾌속발전;이탄기재료시리계이차전지중요적전겁재료화관건조분。석묵희시“지유지박”적탄기재료,량호적역학、열학、전학성능이급고비표면적화유성편상적결구특정사기재리계이차전지중전시출흔대적응용잠력;작위기타 sp2잡화탄기재료적기본결구단원,석묵희적출현야위구건고성능적신형탄전겁재료제공료계궤。평술료불동결구형모적석묵희기재료재리계이차전지중적연구진전,병대목전존재적문제화하일보적공작방향진행료분석여전망。
Clean and efficient electrochemical energy storage and conversion devices are urgently required due to the aggravating energy and environmental problems.The lithium-based rechargeable batteries including lithi-um-ion,lithium-sulfur and lithium-air batteries have attracted much attention for lithium possessing the ex-tremely high energy density,while the carbonaceous materials play a vital role as carbon electrodes or key com-ponents for noncarbon electrodes in these batteries.With the unique structure of single-layer thickness with close-packed conj ugated hexagonal lattices,graphene possesses huge specific surface area,excellent mechanical, thermal and electrical properties,inherent flexibility and chemical stability.Meanwhile,some novel carbon based high performance electrode materials can be designed and assembled with graphenes which are used as the basic unit for various sp2 carbons.Therefore,graphene-based materials with well-controlled nanostructure show great potentials in lithium-based rechargeable batteries.The progresses of the related studies and applica-tions are summarized and the challenges and prospects are also commented and discussed.