
1.北京化工大学材料科学与工程学院 北京 100029
艾变开,女,1975年1月出生,2002年7月毕业于北京化工大学,应用化学专业,硕士研究生
魏杰
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艾变开, 魏杰. 增塑对UV固化型高分子固体电解质性能的影响[J]. 辐射研究与辐射工艺学报, 2002,20(4):251-254.
AI Biankai, WEI Jie. EFFECT OF PLASTISIZER ON THE PROPERTIES OF UV-CURABLE POLYMER SOLID ELECTROLYTES[J]. Journal of Radiation Research and Radiation Processing, 2002,20(4):251-254.
将合成的大分子量的聚乙二醇丙烯酸酯 (PEGDA)齐聚物与光引发剂、LiClO,4,组成光敏体系 ,与一定比例的碳酸乙烯酯(EC)、碳酸丙烯酯 (PC)或其混合物进行混合 ,经紫外光辐照制得了一种新型的高分子固体电解质膜 ,考察了增塑剂种类和用量对光固化速率、电导率和机械性能的影响。结果表明 ,增塑是提高UV固化型高分子固体电解质导电性能的有效方法 ,在机械性能满足使用要求的条件下 ,增塑的UV固化型固体电解质的电导率可以高达10,-4,S/cm左右。
Polyethylene glycol diacrylate (PEGDA), which contained acrylic end - groups, was prepared for solid polymer electrolytes(SPE) with a solid acid as catalyst. A novel type of SPE was obtained by mixing PEGDA with photoinitiator, LiClO,4, and plasticizer, and then being irradiated by UV light. The UV-curing, conducting and mechanical performances, depending on the type and the contend of plasticizer, were primarily discussed. The conclusion showed: plasticizing was an efficient method of improving the conductivity of UV-curable solid polymer electrolytes, and the conductivity of this kind of electrolytes was up to about 10,-4,S/cm when the mechanical performance of it was satisfying.
增塑UV固化高分子固体电解质电导率
PlasticizingUV- curingPolymer solid electrolytesConductivity
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