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A high-voltage quasi-solid-state flexible supercapacitor with a wide operational temperature range based on a low-cost 'water-in-salt' hydrogel electrolyte

机译:一种高压quasi-solid-state灵活超级电容器具有广泛的操作基于低成本的温度范围“water-in-salt”水凝胶电解质

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摘要

Recently, "water-in-salt" electrolytes have provided a huge boost to the realization of high energy density for water-based supercapacitors by broadening the electrochemical stability window. However, the high cost and low conductivity of high concentration LiTFSI greatly restrict the possibility of practical application. Herein, we adopt a new strategy to develop a low-cost and quasi-solid-state polyelectrolyte hydrogel accommodating a superhigh concentration of CH3COOK through in situ polymerization, avoiding the problem that many conventional polymers cannot accommodate ultra-high ion concentration. The polyelectrolyte hydrogel with 24 M CH3COOK exhibits a conductivity of up to 35.8 mS cm(-1) and a stretchability of 950%. With advanced N-doped graphene hydrogel electrodes, the assembled supercapacitor yields a voltage window of 2.1 V with an energy density of 33.0 W h kg(-1) and superior cyclability with 88.2% capacitance retention at 4 A g(-1) after 6000 cycles comparable to those supercapacitors using high-cost LiTFSI salts. Besides, the supercapacitor with excellent temperature stability in the range of -20 to 70 degrees C can light an LED for more than one minute. The assembled flexible device with the PAAK/CMC-24 M gel film sandwiched in between demonstrates excellent bendability from 0 degrees to 180 degrees and shows great potential for flexible/wearable electronic devices. Our feasible approach provides a new route for assembling quasi-solid-state flexible high-energy storage devices with "water-in-salt" electrolytes.
机译:最近,“water-in-salt”电解质高的实现提供了一个巨大的推动水性超级电容器的能量密度扩大电化学稳定窗口。然而,高成本和低的电导率高浓度LiTFSI极大地限制实际应用的可能性。开发一种低成本和采用新策略quasi-solid-state聚电解质水凝胶适应一个超高的浓度CH3COOK原位聚合的方法,避免这个问题,许多传统的聚合物无法适应超高离子浓度。与24 M CH3COOK聚电解质水凝胶展品的导电率35.8厘米(1)女士和950%的拉伸性。n型石墨烯水凝胶电极,超级电容器组装产生一个电压窗口2.1 V的能量密度33.0 W h公斤(1)和上级cyclability 88.2%电容保持在4 g(1) 6000年之后周期与那些超级电容器使用高成本LiTFSI盐。超级电容器具有优良的温度稳定在-20 - 70摄氏度的范围光LED超过一分钟。灵活组装设备与PAAK / CMC-24 M凝胶膜演示了夹在中间优秀的弯曲性从0度到180年度,显示出了巨大的潜力灵活的/可穿戴电子设备。可行的方法提供了一种新的途径组装quasi-solid-state灵活的高能存储设备与“water-in-salt”电解质。

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