超级电容器
电解质
假电容
材料科学
储能
电容
钼酸钠
电极
化学工程
乙烯醇
电化学
无机化学
纳米技术
钼酸盐
聚合物
化学
复合材料
工程类
物理化学
功率(物理)
冶金
物理
量子力学
作者
M. Sandhiya,Vivekanand,S. Suresh Balaji,M. Sathish
标识
DOI:10.1021/acsaem.0c02299
摘要
The recent advancement in flexible/bendable displays such as phones, smart bands, laptops, and televisions demands flexible energy storage devices. Heteroatom-doped graphene electrodes are promising candidates for flexible energy-storage applications because of its dual nature of electrochemical double-layer capacitance and pseudocapacitance. The low energy density of supercapacitors limits their potential use and attempts are in progress to overcome this issue. Redox-additive electrolytes are presumed to be one of the elite tactics to augment the energy density of the supercapacitor device. Here, the sodium molybdate (Na2MoO4)-incorporated polymer gel electrolyte has been demonstrated to enhance the energy density of a flexible supercapacitor. The supercapacitor electrode with Na2MoO4/H2SO4 (714 F/g) acquired ∼2.4-fold greater specific capacitance than with H2SO4 (300 F/g) in a three-electrode configuration. Moreover, the energy density of symmetric supercapacitor with Na2MoO4/H2SO4 (23 Wh/kg) is ∼2-fold higher compared with H2SO4 electrolyte (13 Wh/kg). The fabricated flexible supercapacitor device with sodium molybdate/poly(vinyl alcohol)/sulfuric acid (Na2MoO4/PVA/H2SO4) gel electrolyte showed 3.4-fold higher energy density (E = 24 Wh/kg) compared to a device with PVA/H2SO4 gel electrolyte (E = 7 Wh/kg). The increase in energy density has been observed after the incorporation of Na2MoO4, which is due to the faradaic reaction between the MoO42− ions in the redox-additive and H+ ions in the H2SO4 electrolyte.
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