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首页> 外文期刊>Journal of Applied Polymer Science >Safe and flexible chitosan-based polymer gel as an electrolyte for use in zinc-alkaline based chemistries
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Safe and flexible chitosan-based polymer gel as an electrolyte for use in zinc-alkaline based chemistries

机译:安全且柔性壳聚糖基聚合物凝胶作为用于锌 - 碱性化学的电解质

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A novel flexible, high performing chitosan-based gel electrolyte with poly (vinyl alcohol) (PVA) and potassium hydroxide (KOH) additives is prepared, using an optimized energy and time efficient method. Incorporation of a gel-based electrolyte in batteries aims to eliminate safety hazards present within conventional liquid-based electrolyte constructions. The ionic conductivity values obtained at room temperature are in the range of 5.32-105 mS/cm depending on composition. Optical, scanning electron microscopy, X-ray diffraction, and Fourier transform infrared spectra studies are conducted to understand morphological and structural changes in the films with additives. Thermogravimetric analysis, manual bending and tensile tests, linear scan and cyclic voltammetry analysis are also conducted to study the physical and electrochemical stability of the films. Also, the prepared electrolytes are incorporated to form Zn-MnO2 batteries and tested. Results reveal no physical damage of the films under continuous bending over 250 cycles. Mechanical properties for CPK0.3 suggest a strong and ductile material well suited for the intended application. Additionally, the novel electrolyte exhibits excellent physical stability up to 50(omicron)C, electrochemical stability until 2 V for zinc electrodes and prove to successfully accommodate redox reactions involved in the Zn-MnO2 alkaline system.
机译:以聚乙烯醇(PVA)和氢氧化钾(KOH)为添加剂,采用优化的节能省时方法,制备了一种新型柔性、高性能的壳聚糖基凝胶电解质。在电池中加入凝胶基电解质旨在消除传统液体基电解质结构中存在的安全隐患。室温下获得的离子电导率值在5.32-105 mS/cm范围内,具体取决于成分。通过光学、扫描电子显微镜、X射线衍射和傅里叶变换红外光谱研究,了解添加添加剂后薄膜的形态和结构变化。还进行了热重分析、手动弯曲和拉伸试验、线性扫描和循环伏安分析,以研究薄膜的物理和电化学稳定性。此外,将制备的电解液加入到锌锰电池中并进行测试。结果表明,在250次以上的连续弯曲下,薄膜没有物理损伤。CPK0的机械性能。3.建议使用适合预期用途的坚固韧性材料。此外,这种新型电解液具有高达50(omicron)C的优异物理稳定性,锌电极的电化学稳定性达到2 V,并证明能够成功适应锌-二氧化锰碱性体系中的氧化还原反应。

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