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纳米锂镧锆钽氧粉体复合聚氧化乙烯制备的固态电解质电化学性能的研究 被引量:7
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作者 赵宁 李忆秋 +2 位作者 张静娴 狄增峰 郭向欣 《储能科学与技术》 CAS 2016年第5期754-761,共8页
与采用液体电解液的传统二次锂离子电池相比,固态二次锂电池在高能量密度和安全性方面具有显著的潜在优势,近年来成为国内外的研究热点。作为固态二次锂电池的核心组成,固态电解质需要具备高离子电导率、宽电化学窗口、对锂稳定、力学... 与采用液体电解液的传统二次锂离子电池相比,固态二次锂电池在高能量密度和安全性方面具有显著的潜在优势,近年来成为国内外的研究热点。作为固态二次锂电池的核心组成,固态电解质需要具备高离子电导率、宽电化学窗口、对锂稳定、力学性能优以及可抑制锂枝晶等特性。为达到以上要求,本工作探索制备了由纳米钽掺杂锂镧锆氧(LLZTO)粉体与聚氧化乙烯(PEO)复合的有机-无机复合固态电解质膜材料,对比研究了在有机物PEO中添加锂盐和不添加锂盐对固态电解质膜电导率及电化学特性的影响。发现在PEO-LLZTO复合电解质膜中,虽然PEO不导电,但界面处存在的渗流效应可极大提高膜的总电导率,室温离子电导率可达到2×10^(-4) S/cm。这一数值虽然略低于PEO-Li TFSI-LLZTO复合电解质膜(室温条件下电导率为6×10^(-4) S/cm),但无锂盐添加的PEO-LLZTO复合电解质膜表现出较好的电化学稳定性和较强的抑制锂枝晶的能力。将PEO-LLZTO复合电解质膜与Li/LiFePO_4和Li/Li Fe0.15Mn0.85PO4组装成软包电池,在0.1 C、60℃的测试条件下可充分发挥正极材料的容量,并可稳定循环200次以上。 展开更多
关键词 固态电解质 聚氧化乙烯 LLZTO纳米粉 渗流效应
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An effective artificial layer boosting high-performance all-solid-state lithium batteries with high coulombic efficiency 被引量:1
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作者 Jianli Wang Zhao Zhang +4 位作者 Hangjun Ying Shunlong Zhang Hui Tan Gaorong Han Wei-Qiang Han 《Journal of Materiomics》 SCIE 2022年第2期257-265,共9页
All-solid-state lithium batteries(ASSLBs)employ high-capacity lithium(Li)metal as the anode and exhibit a higher energy density than that of conventional Li-ion batteries.However,the problems arose from the Li dendrit... All-solid-state lithium batteries(ASSLBs)employ high-capacity lithium(Li)metal as the anode and exhibit a higher energy density than that of conventional Li-ion batteries.However,the problems arose from the Li dendrites induce severely parasitic reaction between Li and electrolytes,leading to low coulombic efficiency(CE)and poor cyclic stability.Herein,a poly(vinylidene-co-hexafluoropropylene)/lithium nitrate(PVDF-HFP/LiNO_(3),marked as PFH/LN)artificial layer is employed to modified Li and achieve high CE ASSLBs with polyethylene oxide-Li_(6.4) La_(3)Zr_(1.4)Ta_(0.6)O_(12)(PEO-LLZTO)electrolyte.LN serves as a functionalized additive to facilitate the formation of a robust solid electrolyte interface(SEI),effi-ciently suppressing the formation of Li dendrites.Additionally,LN as a“binder”effectively links PFH with Li,providing good contact.PFH possesses high mechanical strength and moderate flexibility,which can not only physically inhibit the growth of Li dendrites,but also maintain the structural integrity of arti-ficial layer over long-term cycles.Finally,Li/Li cells with such artificial layer demonstrate ultralong cycle life of 1800 and 1000 h under 0.2 and 0.4 mA cm^(-1),respectively.Furtherly,high CE can be achieved when applied in both LiFePO 4 full cells and Li-Cu half cells.This work offers a facile and efficient strategy to greatly promote CE in PEO-based ASSLBs. 展开更多
关键词 All-solid-state lithium batteries High coulombic efficiency PVDF-HFP/LiNO 3 artificial layer peo-llzto electrolyte A robust SEI
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