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钠离子电池硬碳负极储钠机理及优化策略 被引量:10
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作者 董瑞琪 吴锋 +1 位作者 白莹 吴川 《化学学报》 SCIE CAS CSCD 北大核心 2021年第12期1461-1476,共16页
钠离子电池因具有成本低、安全性高等优势,被认为是一种非常适合应用于大规模储能领域的电化学储能技术.合适的负极材料是促进钠离子电池实现商业化的关键之一.硬碳材料由于具有丰富的碳源、低成本、无毒环保,且储钠电位低而被认为是最... 钠离子电池因具有成本低、安全性高等优势,被认为是一种非常适合应用于大规模储能领域的电化学储能技术.合适的负极材料是促进钠离子电池实现商业化的关键之一.硬碳材料由于具有丰富的碳源、低成本、无毒环保,且储钠电位低而被认为是最可能被实用化的钠离子电池负极材料.然而硬碳负极的实际应用中也面临着首周库伦效率低、长循环稳定性不足以及倍率性能较差等问题,近年来众多研究者致力于硬碳负极的性能优化研究,本综述从结构调控、形貌设计、界面构造、电解液优化四方面总结了近年来钠离子电池硬碳负极的性能优化策略研究进展,分析了每种优化策略的优点和不足,并进一步讨论了钠离子电池硬碳负极实用化进程中面临的瓶颈问题和挑战. 展开更多
关键词 钠离子电池 负极 硬碳 性能优化 实用化
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Tailoring Defects in Hard Carbon Anode towards Enhanced Na Storage Performance 被引量:6
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作者 ruiqi dong Feng Wu +5 位作者 Ying Bai Qinghao Li Xiqian Yu Yu Li Qiao Ni Chuan Wu 《Energy Material Advances》 2022年第1期262-272,共11页
Hard carbon(HC)anodes show conspicuously commercialized potential for sodium-ion batteries(SIBs)due to their costeffectiveness and satisfactory performance.However,the development of hard carbon anodes in SIBs is stil... Hard carbon(HC)anodes show conspicuously commercialized potential for sodium-ion batteries(SIBs)due to their costeffectiveness and satisfactory performance.However,the development of hard carbon anodes in SIBs is still hindered by low initial Coulombic efficiency(ICE)and insufficient cyclic stability,which are induced by inappropriate defects in the structure.Herein,we introduce a simple but effective method to tailor the defects in HC by the chemically preadsorbed K^(+).The soft Xray absorption spectroscopy at the C K-edges reveals that K^(+)can anchor on the hard carbon via C-O-K bonds,occupying the irreversible reactive sites of Na^(+).Therefore,the irreversible capacity caused by some C-O bonds can be reduced.Moreover,the preadsorbed K^(+)can induce the rearrangement of carbon layers and lead to a high graphitization structure with fewer defects and large interlayer spacing,which not only improves the structural stability and electrical conductivity of the HC anode but also facilitates fast Na^(+)diffusion.Therefore,the as-obtained optimized anode demonstrates a higher ICE with better cyclic stability and superior rate capacities compared with the anode without preadsorbed K^(+).This work indicates that K^(+)preadsorbed into hard carbon is a practicable alternative to enhance the Na storage performances of HC anodes for SIBs. 展开更多
关键词 IRREVERSIBLE stability ANODE
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