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铌酸锂调控固态电解质电场结构促进锂离子高效传输
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《Science China Materials》2024年 第6期67卷 1947-1955页
作者:刘晓潼 温博华 钟贵明 程醒 简翠英 郭勇 黄妍斐 马家宾 史沛然 陈立坤 张丹丰 吴士超 柳明 吕伟 贺艳兵 康飞宇Shenzhen All-Solid-State Lithium Battery Electrolyte Engineering Research CenterInstitute of Materials Research(IMR)Tsinghua Shenzhen International Graduate SchoolTsinghua UniversityShenzhen 518055China School of Materials Science and EngineeringTsinghua UniversityBeijing 100084China Laboratory of Advanced Spectro-electrochemistry and Li-ion BatteriesDalian Institute of Chemical Physics Chinese Academy of SciencesDalian 116023China Department of Mechanical EngineeringYork UniversityTorontoON M3J 1P3Canada Nanoyang GroupState Key Laboratory of Chemical EngineeringSchool of Chemical Engineering and TechnologyTianjin UniversityTianjin 300072China College of Materials Science and EngineeringShenzhen UniversityShenzhen 518055China 
聚合物基固态电解质得益于其易加工性,最有希望应用于下一代固态锂金属电池.目前,聚合物基态电解质的离子电导率提升策略多为加入导锂陶瓷以构建离子传输通道,其提升程度有限.电场在锂离子输运过程中存在重要影响,目前研究中有关电场对...
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Controlled Ag-driven superior rate-capability of Li4Ti5O12 anodes for lithium rechargeable batteries
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《Nano research2013年 第5期6卷 365-372页
作者:Jae-Geun Kim Dongqi Shi Min-Sik Park Goojin Jeong Yoon-Uk Heo Minsu Seo Young-Jun Kim Jung Ho Kim Shi Xue DouInstitute for Superconducting and Electronic Materials University of Wollongong North Wollongong NSW2500 Australia Advanced Batteries Research Center Korea Electronics Technology Institute Seongnam 463-816 Republic of Korea Research Facility Center Graduate Institute of Ferrous Technology Pohang University of Science and Technology Pohang 790-784 Republic of Korea 
形态学和 Li4Ti5O12 阳极的电子结构被知道在锂决定它的电、电气化学的性质可充电的电池。Ag-Li4Ti5O12 nanofibers 讲道理地被设计了并且由一种 electrospinning 技术综合了满足要求一个维(1D ) 形态学和优异电的电导率。此处,我们发...
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陶瓷液态混合电解质中锂离子自发交换和协同传导实现高效转移
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《Science Bulletin》2022年 第9期67卷 946-954,M0004页
作者:Kai Shi Likun Chen Zipei Wan Jie Biao Guiming Zhong Xue Li Lu Yang Jiabin Ma Wei Lv Fuzeng Ren Hongqi wang Yong Yang Feiyu Kang Yan-Bing HeShenzhen Geim Graphene CenterInstitute of Materials Research(iMR)Tsinghua Shenzhen International Graduate SchoolTsinghua UniversityShenzhen 518055China Laboratory of Advanced Spectro-electrochemistry and Li-ion BatteriesDalian Institute of Chemical PhysicsChinese Academy of SciencesDalian 116023China Department of Materials Science and EngineeringSouthern University of Science and TechnologyShenzhen 518055China Guangdong Liwang New Energy Co.Ltd.Dongguan 523731China State Key Laboratory of Physical Chemistry of Solid SurfacesCollaborative Innovation Center of Chemistry for Energy Materials and Department of ChemistryXiamen UniversityXiamen 361005China 
陶瓷电解质被广泛用于构建固液混合电解质,对提升固液混合电池的电化学性能和安全性能具有重要作用.然而,固液混合电解质中锂离子的传输机制尤其是陶瓷电解质对离子输运的贡献尚不清楚.该工作设计了3种陶瓷液态混合电解质,通过固态核磁...
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