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首页> 外文期刊>Ionics >Preparation and characterization of proton-conducting polymer electrolyte based on PVA, amino acid proline, and NH4Cl and its applications to electrochemical devices
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Preparation and characterization of proton-conducting polymer electrolyte based on PVA, amino acid proline, and NH4Cl and its applications to electrochemical devices

机译:基于PVA,氨基酸脯氨酸和NH4CL的质子传导聚合物电解质的制备与表征及其在电化学装置中的应用

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摘要

Biodegradable solid polymer electrolytes based on PVA (polyvinyl alcohol) and amino acid (proline) with different molar mass percentages of ammonium chloride (NH4Cl) were prepared by solution-casting technique using distilled water as solvent. Their structural, thermal, vibrational, and electrical properties were studied. XRD analysis confirms the amorphous nature of the polymer electrolytes. DSC measurements show a decrease in T-g with increasing salt concentration. The FTIR analysis reveals the complex formation between the PVA, proline, and ammonium chloride. Transference numbers for the proton-conducting polymer electrolytes have been measured. The maximum ionic conductivity has been found to be 7.01x10(-4)S/cm at ambient temperature for 75Mwt% PVA;25Mwt% proline:0.3 (m.m.%) of NH4Cl polymer electrolyte using AC impedance analyzer. The temperature-dependent conductivity of the polymer membranes obeys Arrhenius behavior. The highest ionic conductivity polymer electrolyte has low activation energy of 0.07eV among the prepared polymer electrolytes. An electrochemical stability window of 3.10V has been measured using linear sweep voltammetry for the highest ionic conducting membrane. The highest conductivity polymer electrolyte 75Mwt% PVA:25Mwt% proline:0.3 (m.m.%) NH4Cl has been used to construct a primary proton battery and fuel cell.
机译:通过使用蒸馏水作为溶剂,通过溶液浇铸技术制备基于PVA(聚乙烯醇)和具有不同摩尔质量百分比的氯化铵(NH 4 Cl)的氨基酸(脯氨酸)的可生物降解的固体聚合物电解质。研究了它们的结构,热,振动和电性能。 XRD分析证实了聚合物电解质的无定形性质。 DSC测量显示盐浓度增加的T-G降低。 FTIR分析揭示了PVA,脯氨酸和氯化铵之间的复杂形成。已经测量了质子传导聚合物电解质的转移编号。在环境温度下发现最大离子电导率为75mWt%PVA的7.01×10(-4)S / cm; 25mWt%脯氨酸:0.3(m.m.%)NH4Cl聚合物电解质使用AC阻抗分析仪。聚合物膜的温度依赖性电导率Obeys Arrhenius行为。最高离子电导率聚合物电解质在制备的聚合物电解质中具有0.07eV的低活化能量。使用线性扫描伏安法测量3.10V的电化学稳定性窗口,用于最高离子导电膜。最高电导率聚合物电解质75mWt%PVA:25mWt%脯氨酸:0.3(m.m.%)NH4Cl已用于构建初级质子电池和燃料电池。

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