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Dielectric relaxations in phosphoric acid-doped poly(2,5-benzimidazole) and its composite membranes

机译:磷酸掺杂的聚(2,5-苯并咪唑)及其复合膜的介电弛豫

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摘要

Poly(2,5-benzimidazole) (ABPBI)-a promising high-temperature polymer electrolyte membrane-is characterized over a wide range of temperature (-50 to 220 degrees C) using broadband dielectric spectroscopy (BDS) to understand the various relaxation processes. The undoped ABPBI membrane shows two major secondary relaxations and a primary relaxation. The effect of phosphoric acid (PA) and phosphotungstic acid grafted zirconium dioxide (PWA/ZrO2) nanoparticles on the chain relaxation and the proton conductivity is investigated. The phosphoric acid alters the relaxation trends, increases the number of free ions in the polymer matrix, and therefore the conductivity. The shift in the peak frequencies of different chain relaxation processes in the presence of PA and PWA/ZrO2 is attributed to the increase in free volume and the consequent easy motion of the polymer chains. The Fourier transform infra-red (FTIR) spectroscopy of ABPBI and the acid-doped composites show all the relevant peaks corresponding to C=C, C=N stretching, and phosphoric acid/phosphates, confirming the formation of ABPBI and doping with PA. The proton conductivity of the membranes is estimated from electrochemical impedance spectroscopy (EIS). To establish the effect of change in crystallinity on relaxations and proton conductivity, the undoped and PA-doped membranes are characterized using thermogravimetric analysis and in situ XRD at high temperatures. (c) 2017 Wiley Periodicals, Inc.
机译:聚(2,5-苯并咪唑)(ABPBI)-一种有前途的高温聚合物电解质膜-使用宽带介电谱(BDS)在宽广的温度范围(-50至220摄氏度)中进行表征,以了解各种松弛过程。未掺杂的ABPBI膜显示出两个主要的次要弛豫和一个主要的弛豫。研究了磷酸(PA)和磷钨酸接枝的二氧化锆(PWA / ZrO2)纳米粒子对链弛豫和质子电导率的影响。磷酸改变了弛豫趋势,增加了聚合物基质中自由离子的数量,从而提高了电导率。在存在PA和PWA / ZrO2的情况下,不同链弛豫过程的峰值频率发生偏移,这是由于自由体积的增加以及随之而来的聚合物链的容易运动引起的。 ABPBI和酸掺杂的复合材料的傅立叶变换红外(FTIR)光谱显示了所有相关的峰,分别对应于C = C,C = N拉伸和磷酸/磷酸盐,从而确认了ABPBI的形成和PA的掺杂。膜的质子电导率通过电化学阻抗谱(EIS)估算。为了建立结晶度变化对弛豫和质子传导性的影响,使用热重分析和高温原位XRD对未掺杂和PA掺杂的膜进行表征。 (c)2017年威利期刊有限公司

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