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Rechargeable Soft-Matter EGaIn-MnO_2 Battery for Stretchable Electronics

机译:可伸缩电子可充电软物质EGaIn-MnO_2电池

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A rechargeable, stretchable battery composed of a liquid metal alloy (eutectic gallium-indium; EGaIn) anode, a carbon paste, and MnO2 slurry cathode, an alkaline electrolytic hydrogel, and a soft elastomeric package is presented. The battery can stably cycle within a voltage range of 1.40-1.86 V at 1 mA cm(-2) while being subject to 100% tensile strain. This is accomplished through a mechanism that involves reversible stripping and plating of gallium along with MnO2 chemical conversion. Moreover, a technique to increase the contact area between the EGaIn anode and hydrogel interface using CaCl2 additives, which reduces polarization and therefore reduces the effective current density, leading to higher discharge plateaus and lower charge plateaus. Relative to previous attempts at energy storage with liquid metal, the EGaIn-MnO2 battery presented here shows an exceptional areal specific capacity (approximate to 3.8 mAh cm(-2)) and robust, stable rechargeability over >100 charging cycles. The battery is also stable under bending, with negligible change in electrochemical properties when bent to a 2 mm radius of curvature. Batteries embedded within a wearable elastomeric sleeve can power a blue light-emitting diode and strain-sensing circuit. These demonstrations suggest that stretchable EGaIn-MnO2 batteries are feasible for applications in wearable energy-storage electronics.
机译:提出了一种可充电,可拉伸的电池,该电池由液态金属合金(共晶镓-铟; EGaIn)阳极,碳糊和MnO2浆料阴极,碱性电解水凝胶和柔软的弹性体包装组成。该电池可以在1.40-1.86 V的电压范围(1 mA cm(-2))下稳定地循环,同时承受100%的拉伸应变。这是通过一种机制完成的,该机制涉及镓的可逆剥离和镀覆以及MnO2化学转化。此外,使用CaCl2添加剂增加EGaIn阳极与水凝胶界面之间的接触面积的技术可降低极化并因此降低有效电流密度,从而导致较高的放电平稳期和​​较低的充电平稳期。相对于以前使用液态金属进行能量存储的尝试,此处介绍的EGaIn-MnO2电池具有出色的面比容量(约3.8 mAh cm(-2)),并且在超过100个充电周期内具有稳定,稳定的可充电性。电池在弯曲下也很稳定,当弯曲到2 mm的曲率半径时,电化学性能的变化可忽略不计。嵌入可穿戴弹性套中的电池可以为蓝色发光二极管和应变感应电路供电。这些演示表明,可拉伸的EGaIn-MnO2电池适用于可穿戴式储能电子设备。

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