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石榴石型Li_(7)La_(3)Zr_(2)O_(12)固态电解质离子电导率及电极界面问题研究进展 被引量:1
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作者 滕雅男 柳欢 +2 位作者 徐薇 白杰 李春萍 《功能材料》 CAS CSCD 北大核心 2023年第2期2109-2122,共14页
石榴石型Li_(7)La_(3)Zr_(2)O_(12)(LLZO)固态电解质因高安全性且对锂金属稳定成为固态锂电池的关键材料。但是,石榴石型固态电解质离子电导率还有待提高以及固-固界面不良接触导致的界面电阻大等问题使LLZO基固态电池的实际应用受到了... 石榴石型Li_(7)La_(3)Zr_(2)O_(12)(LLZO)固态电解质因高安全性且对锂金属稳定成为固态锂电池的关键材料。但是,石榴石型固态电解质离子电导率还有待提高以及固-固界面不良接触导致的界面电阻大等问题使LLZO基固态电池的实际应用受到了限制。从石榴石型LLZO结构角度出发,探讨了锂离子输运机制并综述了提高离子电导率的策略及最新成果。针对固态锂电池无法避免的界面问题,从LLZO固态电解质与同为固态的电极接触方面,总结了优化界面的具体方法。最后,提出了石榴石型固态电解质未来可研究的方向,并促进其在全固态锂电池中的发展和应用。 展开更多
关键词 固态锂电池 Li_(7)La_(3)Zr_(2)O_(12)电解质 离子电导率 电解质/电极界面
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全固态锂离子电池用硫化物电解质研究进展 被引量:2
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作者 郭邦军 贾理男 +1 位作者 朱金辉 张希 《电池》 CAS 北大核心 2024年第4期559-563,共5页
全固态锂离子电池用硫化物电解质体系具有离子导电率高、制备方法简易、延展性良好和电化学性能稳定等优点,但距离大规模应用仍有一定难度。综述全固态锂离子电池硫化物电解质的研究现状,介绍包含玻璃态、玻璃陶瓷态和晶态等类型的电解... 全固态锂离子电池用硫化物电解质体系具有离子导电率高、制备方法简易、延展性良好和电化学性能稳定等优点,但距离大规模应用仍有一定难度。综述全固态锂离子电池硫化物电解质的研究现状,介绍包含玻璃态、玻璃陶瓷态和晶态等类型的电解质种类,列举硫化物固态电解质的常见制备方法,总结现有的正极与电解质界面、负极与电解质界面以及电解质自身稳定性等问题及相关解决方案。对硫化物电解质在全固态锂离子电池的应用前景作出展望。 展开更多
关键词 锂离子电池 全固态电池 电解质 硫化物电解质 制备方法 电解质/电极界面 电解质稳定性
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硫化物固态电解质Li10GeP2S12与锂金属间界面稳定性的改善研究 被引量:2
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作者 周墨林 蒋欣 +2 位作者 易婷 杨向光 张一波 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2020年第8期1810-1817,共8页
通过N-丁基-N-甲基哌啶双(氟磺酰)亚胺盐离子液体和双(氟磺酰)亚胺锂盐修饰了Li|Li10GeP2S12界面,并研究了界面的改性效果.研究结果表明,在界面处原位生成一层致密的固体电解质界面膜(SEI),具有一定流变性的离子液体可渗透到Li10GeP2S1... 通过N-丁基-N-甲基哌啶双(氟磺酰)亚胺盐离子液体和双(氟磺酰)亚胺锂盐修饰了Li|Li10GeP2S12界面,并研究了界面的改性效果.研究结果表明,在界面处原位生成一层致密的固体电解质界面膜(SEI),具有一定流变性的离子液体可渗透到Li10GeP2S12晶粒内部;在0.1 mA/cm2的电流密度下,界面改性后的Li|Li10GeP2S12|Li对称电池可稳定循环1500 h以上,极化电压仅为30 mV.在2.5~3.6 V电压范围内, Li|Li10GeP2S12|LiFePO4电池在0.2C倍率下充放电循环的首次放电比容量为148.1 mA·h/g,库仑效率为95.8%,经过30次循环后容量保持率为90.1%. 展开更多
关键词 硫化物固态电解质 电解质/电极界面 离子液体
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石榴石型Li_(7)La_(3)Zr_(2)O_(12)复合固体电解质的研究进展 被引量:3
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作者 刘楚薇 王建明 +1 位作者 王漪霏 刘涛 《功能材料》 CAS CSCD 北大核心 2021年第11期11076-11086,共11页
与Li_(7)La_(3)Zr_(2)O_(12)(LLZO)片状陶瓷固体电解质相比,LLZO复合固体电解质在复合材料的协同作用下,改善固体电解质与电极界面的润湿性,降低界面电阻,并抑制锂枝晶的生长,提高电池的循环稳定性。室温下离子电导率为10^(-4)~10^(-3) ... 与Li_(7)La_(3)Zr_(2)O_(12)(LLZO)片状陶瓷固体电解质相比,LLZO复合固体电解质在复合材料的协同作用下,改善固体电解质与电极界面的润湿性,降低界面电阻,并抑制锂枝晶的生长,提高电池的循环稳定性。室温下离子电导率为10^(-4)~10^(-3) S/cm数量级。重点阐述了LLZO基复合固体电解质和LLZO/聚合物固体电解质的最新研究进展,讨论了LLZO含量、晶粒尺寸、微观形貌等对其锂离子传输途径、离子电导率和电池性能的影响,并提出了LLZO复合固体电解质的未来发展方向。 展开更多
关键词 LLZO复合固体电解质 LLZO基复合固体电解质 LLZO/SPE固体电解质 离子电导率 电解质/电极界面 电池性能
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Designing Conformal Electrode-electrolyte Interface by Semi-solid NaK Anode for Sodium Metal Batteries
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作者 YIN Chunsen CHEN Zeyuan WANG Xiuli 《材料科学与工程学报》 北大核心 2025年第2期191-201,共11页
Solid-state Na metal batteries(SSNBs),known for the low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interf... Solid-state Na metal batteries(SSNBs),known for the low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interfacial contact in solid-state electrolytes has hindered the commercialization of SSNBs.Driven by the concept of intimate electrode-electrolyte interface design,this study employs a combination of sodium-potassium(NaK)alloy and carbon nanotubes to prepare a semi-solid NaK(NKC)anode.Unlike traditional Na anodes,the paintable paste-like NKC anode exhibits superior adhesion and interface compatibility with both current collectors and gel electrolytes,significantly enhancing the physical contact of the electrode-electrolyte interface.Additionally,the filling of SiO_(2) nanoparticles improves the wettability of NaK alloy on gel polymer electrolytes,further achieving a conformal interface contact.Consequently,the overpotential of the NKC symmetric cell is markedly lower than that of the Na symmetric cell when subjected to a long cycle of 300 hrs.The full cell coupled with Na_(3)V_(2)(PO_(4))_(2) cathodes had an initial discharge capacity of 106.8 mAh·g^(-1) with a capacity retention of 89.61%after 300 cycles,and a high discharge capacity of 88.1 mAh·g^(-1) even at a high rate of 10 C.The outstanding electrochemical performance highlights the promising application potential of the NKC electrode. 展开更多
关键词 Solid-state Na metal battery NaK alloy Gel electrolyte Electrode-electrolyte interface dendrite free anode
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Designing Conformal Electrode-electrolyte Interface by Semi-solid NaK Anode for Sodium Metal Batteries
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作者 YIN Chunsen CHEN Zeyuan WANG Xiuli 《材料科学与工程学报》 CAS CSCD 北大核心 2024年第4期533-543,共11页
Solid-state Na metal batteries(SSNBs),known for its low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interf... Solid-state Na metal batteries(SSNBs),known for its low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interfacial contact in solid-state electrolytes has hindered the commercialization of SSNBs.Driven by the concept of intimate electrode-electrolyte interface design,this study employs a combination of NaK alloy and carbon nanotubes to prepare a semi-solid NaK(NKC)anode.Unlike traditional Na anodes,the paintable paste-like NKC anode exhibits superior adhesion and interface compatibility with both current collectors and gel electrolytes,significantly enhancing the intimate contact of electrode-electrolyte interface.Additionally,the filling of SiO_(2)nanoparticles improves the wettability of NaK alloy on gel polymer electrolytes,further achieving a conformal interface contact.Consequently,the overpotential of the NKC symmetric cell is markedly lower than that of the Na symmetric cell when subjected to a long cycle of 300 h.The full cell coupled with Na_(3)V_(3)(PO_(4))_(2)cathodes had an initial discharge capacity of 106.8 mAh·g^(-1)with a capacity retention of 89.61%after 300 cycles,and a high discharge capacity of 88.1 mAh·g^(-1)even at a high rate of 10 C.The outstanding electrochemical performance highlights the promising application potential of the NKC electrode. 展开更多
关键词 Solid-state Na metal battery NaK alloy Gel electrolyte electrode-electrolyte interface dendrite free anode
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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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