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Poly-γ-glutamic Acid Hydrogels as Electrolyte for Poly(3,4-ethylenedioxythiophene)-Based Supercapacitors

机译:聚-γ-谷氨酸水凝胶作为聚(3,4-亚乙基氧基噻吩)的电解质 - 基于超级电容器

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摘要

Biosynthetic poly-¿-glutamic acid (¿-PGA) has been used to produce hydrogels using cystamine as cross-linker and 1-[3-(dimethylamino)propyl]-3-ethylcarbodiimide methiodide (EDC methiodide) as condensing agent. Eight different hydrogels with different properties were formulated by varying both the molecular weight of ¿-PGA and the ¿-PGA/EDC/cystamine ratio and subsequently characterized. The most appropriate ¿-PGA hydrogel was selected to perform as solid electrolytic medium in organic electrochemical supercapacitors (OESCs) using poly(3,4-ethylenedioxythiophene) (PEDOT) electrodes based on their mechanical behavior (consistency and robustness to hold the PEDOT electrodes), morphology, and influence on the electrochemical response of the organic electrode (i.e., specific capacitance and both maximum energy and power density values). Hence, PEDOT/¿-PGA energy storage devices fabricated using the most adequate hydrogel formulation displayed a supercapacitor response of 168 F/g and a capacitance retention of 81%. Moreover, after evaluating the maximum energy and power densities (Ragone plot), cyclability, long-term stability, leakage current, and self-discharging response of PEDOT/¿-PGA OESC devices, results allow us to highlight the merits and great potential of ¿-PGA hydrogels as sustainable ion-conductive electrolytes for environmentally friendly energy storage technologies.
机译:生物合成多甲酰胺酸(¿-PGA)已用于使用胱胺作为交联剂和1- [3-(二甲基氨基)丙基] -3-乙基碳二亚胺甲基碘(EDC甲基二酰胺)作为冷凝剂的水凝胶。通过改变¿-PGA和Ⅳ-PGA / EDC / Cystamine比的分子量和随后表征来制定具有不同性质的八种不同的水凝胶。选择最合适的¿-PGA水凝胶以使用聚(3,4-亚乙基噻吩)(PEDOT)电极在有机电化学超级电容器(OESC)中以基于它们的机械行为(持续性和稳健性以保持佩特电极)的固体电解培养基,形态和对有机电极的电化学响应的影响(即,特定电容和最大能量和功率密度值)。因此,使用最适体的水凝胶制剂制造的PEDOT /¿-PGA能量存储装置显示出168 f / g的超级电容器响应和81%的电容保留。此外,在评估最大能量和功率密度(ragone图)之后,可接触性,长期稳定性,泄漏电流和铅皮/¿-pgaOesc器件的自放电响应,结果允许我们突出效果和巨大潜力¿-PGA水凝胶作为可持续离子导电电解质,用于环保能量存储技术。

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