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首页> 外文期刊>European Polymer Journal >Grafting distance and molecular weight dependent proton conduction of polymer electrolyte brushes
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Grafting distance and molecular weight dependent proton conduction of polymer electrolyte brushes

机译:聚合物电解质刷的接枝距离和分子量依赖性质子传导

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Proton conducting materials having reasonable proton conductivity over wide range of relative humidity are of great importance for their application in electrochemical or energy storage devices. Herein, we show that polymer electrolyte brushes on titanate nanotubes fabricated by surface-initiated free radical polymerization technique are effective proton conductors under both hydrated and anhydrous conditions. Both grafting distance and molecular weight of surface-attached polymer electrolyte chains exhibit significant influence on proton conductivity of the formed polymer brushes. With the decrease in average grafting distance of surface-attached polymer chains, the proton conductivity of the synthesized polymer brushes initially increases and then decreases after reaching a maximum value. Non-monotonic behavior of proton conductivity with the increase in molecular weight is also observed. Under optimized conditions, the proton conductivity values of the formed polymer electrolyte brush reach 0.095 S cm(-1) under 100% relative humidity and 0.01 S cm(-1) under anhydrous conditions at 140 degrees C. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在较宽的相对湿度范围内具有合理质子传导性的质子传导材料对于其在电化学或能量存储设备中的应用非常重要。在这里,我们表明,在水合和无水条件下,通过表面引发的自由基聚合技术制备的钛酸酯纳米管上的聚合物电解质刷都是有效的质子导体。表面附着的聚合物电解质链的接枝距离和分子量都对所形成的聚合物刷的质子传导性表现出显着影响。随着表面附接的聚合物链的平均接枝距离的减小,合成的聚合物刷的质子电导率先增大,然后在达到最大值后减小。还观察到质子传导性随分子量增加的非单调行为。在最佳条件下,所形成的聚合物电解质刷的质子电导率值在100%相对湿度下达到0.095 S cm(-1),在无水条件下在140摄氏度下达到0.01 S cm(-1)。(C)2015 Elsevier Ltd.版权所有。

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