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NaPO_(2)F_(2) additive to regulate robust electrode/electrolyte interphases for high-voltage sodium-ion batteries
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作者 LING Zhao-hong ZHU Jue +1 位作者 CAO Xin-xin LIANG Shu-quan 《Journal of Central South University》 CSCD 2024年第12期4483-4496,共14页
High-voltage sodium-ion batteries(SIBs)are emerging as promising candidates for large-scale energy storage systems due to their abundant sodium source and high energy density.However,the instability of the electrode e... High-voltage sodium-ion batteries(SIBs)are emerging as promising candidates for large-scale energy storage systems due to their abundant sodium source and high energy density.However,the instability of the electrode electrolyte interphase remains a critical barrier to the potential use of high-voltage SIBs.Herein,sodium difluorophosphate(NaDFP)and fluoroethylene carbonate(FEC)serve as functional electrolyte additives to stabilize the interface of the high-voltage cathode.The oxidative competition between FEC and NaDFP facilitates the robust formation of the cathode-electrolyte interface(CEI)layer,enriched with inorganic components such as NaF/NaPO_(x)F_(y).The highly conductive NaF/NaPO_(x)F_(y)and inorganics provide fast ion transport pathways and mechanical strength,thereby mitigating the decomposition of carbonates and NaPF_(6).The half-cell equipped with BE 2 F+0.5 DFP demonstrates 93.9%capacity retention at 4.3 V across 600 cycles,showcasing excellent cycling capability.Full HC||NVOPF cells exhibit sustained performance with 91.69%capacity retention and a capacity of 91.57 mA·h/g over 1000 cycles at a 5 C rate.This study is poised to garner increased scholarly interest in the domain of rational electrolyte formulation for practical applications. 展开更多
关键词 sodium-ion battery sodium difluorophosphate functional electrolyte cathode electrolyte interface high voltage performance
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电化学双电层电容器失效机理的研究进展
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作者 徐桂培 孙倩 +4 位作者 赖洁文 卢毅锋 邸会芳 黄辉 王振兵 《化工学报》 北大核心 2025年第3期951-962,共12页
电化学双电层电容器(electrochemical double layer capacitors,EDLC)因其高功率密度,长循环寿命和快速充放电能力而备受关注。然而,EDLC的稳定性和可靠性对于实际应用具有决定性的影响。为提升稳定性和延长寿命,深入了解性能衰减与失... 电化学双电层电容器(electrochemical double layer capacitors,EDLC)因其高功率密度,长循环寿命和快速充放电能力而备受关注。然而,EDLC的稳定性和可靠性对于实际应用具有决定性的影响。为提升稳定性和延长寿命,深入了解性能衰减与失效机理至关重要。探讨了EDLC的失效标准以及性能衰减的监测和原位电化学表征方法。通过综述EDLC失效研究的新进展,聚焦于电极材料、电解液、电极-电解液界面及集流体等核心组件,旨在揭示不同体系中的失效现象和机理。最后,展望了高稳定性EDLC的发展方向和挑战,强调新材料开发与表征方法改进,为性能优化和应用拓展提供策略。 展开更多
关键词 失效机理 失效标准 电极 有机电解液 电极-电解液界面 集流体
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