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首页> 外文期刊>Solid state ionics >Stabilization of the polymer electrolyte/lithium metal electrode interface with increased ion conduction using PEO polymer/low molecular weight PE-b-PEO diblock copolymer composite bi-layer films
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Stabilization of the polymer electrolyte/lithium metal electrode interface with increased ion conduction using PEO polymer/low molecular weight PE-b-PEO diblock copolymer composite bi-layer films

机译:使用PEO聚合物/低分子量PE-b-PEO二嵌段共聚物复合双层薄膜通过增加离子传导来稳定聚合物电解质/锂金属电极界面

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摘要

A method of stabilizing the interface of PEO polymer electrolytes with respect to lithium metal, using a composite bi-layered, hybrid film is described. This method utilizes a low molecular weight PE-b-PEO diblock copolymer having a general chemical formula of H-(CH2)(32)-(O-CH2CH2)(10)-OH that can be positioned at the PEO polymer electrolyte surface. These hybrid films are fabricated by making a thin layer of the PE-b-PEO materials by solvent casting and then casting a second layer of standard PEO polymer electrolyte on the PE-b-PEO film. This PE-b-PEO layer adheres to the polymer electrolyte surface, making a stabilized interface with lithium. This hybrid system not only stabilize the lithium/polymer electrolyte interface but also has the desirable property of increasing ion conduction by almost three orders of magnitude over a standard PEO polymer electrolyte system. The stabilization of the lithium/polymer electrolyte interface and the increase in ionic conduction has been studied by using AC impedance spectroscopy, AFM phase imaging, and attenuated total reflection IR, which allow the mechanism for stabilization and increased ionic conduction to be discussed. (C) 2016 Elsevier B.V. All rights reserved.
机译:描述了一种使用复合双层混合膜稳定PEO聚合物电解质相对于锂金属的界面的方法。该方法利用具有可以定位在PEO聚合物电解质表面的通式H-(CH 2)(32)-(O-CH 2 CH 2)(10)-OH的低分子量PE-b-PEO二嵌段共聚物。通过使用溶剂浇铸法在PE-b-PEO材料上形成薄层,然后在PE-b-PEO膜上浇铸第二层标准PEO聚合物电解质,来制造这些杂化膜。该PE-b-PEO层粘附到聚合物电解质表面,与锂形成稳定的界面。该混合体系不仅稳定了锂/聚合物电解质界面,而且具有与标准PEO聚合物电解质体系相比将离子传导提高近三个数量级的理想特性。锂/聚合物电解质界面的稳定和离子传导的增加已通过使用交流阻抗谱,AFM相成像和衰减的全反射IR进行了研究,这使人们可以讨论稳定和增加离子传导的机理。 (C)2016 Elsevier B.V.保留所有权利。

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