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Ultraviolet irradiated PEO/LATP composite gel polymer electrolytes for lithium-metallic batteries (LMBs)

机译:锂金属电池(LMB)的紫外线辐照PEO / LATP复合凝胶聚合物电解质

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A new composite gel polymer electrolyte (PEO-Bp-LATP) membrane consisting of poly-ethylene oxide (PEO), benzophenone (Bp) and varying amounts of highly ion-conducting lithium aluminum titanium phosphate (LATP) particles was prepared by significant Ultraviolet (UV) technology. The as-prepared PEO-Bp-LATP electrolyte membranes showed improved mechanical properties and superior electrochemical performances in Lithium metal batteries (LMBs). Typically, PEO-Bp-15 wt% LATP showed highest ionic conductivity (s=3.3 x 10(-3) S. cm(-1)) at RT, a high Li-transference (t(Li+)=0.77) and wider electrochemical stability window (ESW) above 5 V as well as good mechanical strength (9.3 MPa). More significantly, the PEO-Bp-15 wt% LATP membrane has an excellent inhibitory effect on Li dendrite expansion in Li symmetric cells and presents a long term cyclic stability with current density of 2 mA/cm(2) over 1100 h for Li//PEO-Bp-15 wt% LATP //Li. Our results for the measurement of galvanostatic charge-discharge deliver fascinating rate performance at 0.1C. Hence, the present study demonstrates that the UV-irradiated PEO-Bp-LATP membrane can be a promising electrolyte to meet the requirements for the next-generation LMBs.
机译:通过显着的紫外光谱法制备了一种新的复合凝胶聚合物电解质(PEO-Bp-LATP)膜,该膜由聚环氧乙烷(PEO),二苯甲酮(Bp)和各种数量的高离子导电磷酸铝钛磷酸酯(LATP)颗粒组成UV)技术。制备的PEO-Bp-LATP电解质膜在锂金属电池(LMBs)中显示出改善的机械性能和优异的电化学性能。通常,PEO-Bp-15 wt%LATP在室温下显示出最高的离子电导率(s = 3.3 x 10(-3)S. cm(-1)),高的Li迁移率(t(Li +)= 0.77)和更宽高于5 V的电化学稳定性窗口(ESW)以及良好的机械强度(9.3 MPa)。更重要的是,PEO-Bp-15 wt%LATP膜对Li对称电池中的Li枝晶膨胀具有出色的抑制作用,并且在1100 h的电流密度下,具有2 mA / cm(2)的长期循环稳定性,对Li / / PEO-Bp-15 wt%LATP // Li。我们的恒电流充放电测量结果在0.1C时具有令人着迷的速率性能。因此,本研究表明,紫外线辐照的PEO-Bp-LATP膜可以满足下一代LMB的需求。

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