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Synthesis and Characteristics of Acrylol Borate as New Acrylic Gelator for Lithium Secondary Battery

机译:锂二次电池用新型丙烯酸胶凝剂硼酸丙烯酯的合成及性能

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A novel acrylol borate was designed and synthesized by reacting acrylate monomer and boric acid.The obtained acrylol borate was used as both gelator and anion receptor for the liquid electrolyte in a lithium secondary battery.It was found that the ionic conductivity of the gel polymer electrolyte (GPE) was as high as that of the liquid electrolyte,and the thermal stability of GPE was increased when only 2 wt% acrylol borate was incorporated into the liquid electrolyte.These results suggest that acrylol borate can be used as an effective additive to enhance the thermal stability of the electrolyte without adversely affecting its conductivity.It is believed that the strong complex formation between boron in the gelator and the anion of the salt is responsible for the enhanced thermal stability of the electrolyte solution and the increased ionic conductivity.
机译:通过丙烯酸酯单体与硼酸的反应设计合成了一种新型的丙烯酸硼酸酯,将所得的丙烯酸硼酸酯用作锂二次电池液体电解质的胶凝剂和阴离子受体,发现该凝胶聚合物电解质的离子电导率(GPE)与液体电解质一样高,当仅向液体电解质中加入2 wt%的丙烯酸丙二醇酯时,GPE的热稳定性就提高了。据信,在胶凝剂中的硼和盐的阴离子之间形成强的络合物是电解质溶液的热稳定性增强和离子电导率升高的原因。

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