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钠/钾离子电池用锑基负极研究进展:失效分析及解决方案 被引量:1
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作者 张冬玉 王春丽 +1 位作者 程勇 王立民 《应用化学》 CAS CSCD 北大核心 2024年第5期616-636,共21页
钠/钾离子电池因其丰富的资源储量被认为是后锂离子电池时代大规模储能应用中最有希望的选择。在众多的钠/钾离子电池负极材料中,锑(Antimony,Sb)基负极由于其高理论比容量受到关注。然而,Sb基材料在储能过程中存在的棘手问题阻碍了它... 钠/钾离子电池因其丰富的资源储量被认为是后锂离子电池时代大规模储能应用中最有希望的选择。在众多的钠/钾离子电池负极材料中,锑(Antimony,Sb)基负极由于其高理论比容量受到关注。然而,Sb基材料在储能过程中存在的棘手问题阻碍了它的实际应用,比如:巨大的体积膨胀导致材料粉化脱离集流体,电池失效;欠佳的导电性,电化学动力缓慢;电极-电解液界面副反应,电池性能差等。为解决这些问题,研究者们从结构设计、掺杂催化改性和电解液界面调控等方面进行了探究,期望将Sb基材料高容量的优势发挥出来。因此,本文总结了近10年“钠/钾离子电池用Sb基负极”研究方面的亮点工作,详细讨论Sb基材料的失效机理,并系统地综述了相应的解决方案,为高性能Sb基及其他合金类负极材料的优化策略提供参考。 展开更多
关键词 钠/钾离子电池 Sb基负极 失效分析 电化学性能优化
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Defect-rich N/O-co-doped porous carbon frameworks as anodes for superior potassium and sodium-ion batteries 被引量:1
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作者 BAI Ling LIU Qian +5 位作者 HONG Tao LI Hao-ran ZHU Fang-yuan LIU Hai-gang LI Zi-quan HUANG Zhen-dong 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第6期1144-1156,共13页
Carbon with its high electrical conductivity,excellent chemical stability,and structure ability is the most promising an-ode material for sodium and potassium ion batteries.We developed a defect-rich porous carbon fra... Carbon with its high electrical conductivity,excellent chemical stability,and structure ability is the most promising an-ode material for sodium and potassium ion batteries.We developed a defect-rich porous carbon framework(DRPCF)built with N/O-co-doped mesoporous nanosheets and containing many defects using porous g-C_(3)N_(4)(PCN)and dopamine(DA)as raw materials.We prepared samples with PCN/DA mass ratios of 1/1,2/1 and 3/1 and found that the one with a mass ratio of 2/1 and a carbonization temperature of 700℃ in an Ar atmosphere(DRPCF-2/1-700),had a large specific surface area with an enormous pore volume and a large number of N/O heteroatom active defect sites.Because of this,it had the best pseudocapacitive sodium and potassium ion stor-age performance.A half battery of Na//DRPCF-2/1-700 maintained a capacity of 328.2 mAh g^(-1) after being cycled at 1 A g^(-1) for 900 cycles,and a half battery of K//DRPC-2/1-700 maintained a capacity of 321.5 mAh g^(-1) after being cycled at 1 A g^(-1) for 1200 cycles.The rate capability and cycling stability achieved by DRPCF-2/1-700 outperforms most reported carbon materials.Finally,ex-situ Raman spectroscopy analysis result confirms that the filling and removing of K^(+)and Na^(+)from the electrochemically active defects are responsible for the high capacity,superior rate and cycling performance of the DRPCF-2/1-700 sample. 展开更多
关键词 Defect-rich porous carbon N/O-co-doping Anode materials Sodium ion batteries Potassium ion batteries
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