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Extremely Durable, Flexible Supercapacitors with Greatly Improved Performance at High Temperatures

机译:极其耐用,灵活的超级电容器,在高温下性能大大提高

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摘要

The reliability and durability of energy storage devices are as important as their essential characteristics (e.g., energy and power density) for stable power output and long lifespan and thus much more crucial under harsh conditions. However, energy storage under extreme conditions is still a big challenge because of unavoidable performance decays and the inevitable damage of components. Here, we report high-temperature operating, flexible supercapacitors (f-SCs) that can provide reliable power output and extreme durability under severe electrochemical, mechanical, and thermal conditions. The outstanding capacitive features (e.g., similar to 40% enhancement of the rate capability and a maximum capacitances of 170 F g(-1) and 18.7 mF cm(-2) at 160 degrees C) are attributed to facilitated ion transport at elevated temperatures. Under high-temperature operation and/or a flexibility test in both static and dynamic modes at elevated temperatures >100 degrees C, the f-SCs showed extreme long-term stability of 100000 cycles (>93% of initial capacitance value) and mechanical durability after hundreds of bending cycles (at bend angles of 60-180 degrees). Even at 120 degrees C, the versatile design of tandem serial and parallel f-SCs was demonstrated to provide both desirable energy and power requirements at high temperatures.
机译:能量存储设备的可靠性和耐用性与其基本特性(例如,能量和功率密度)一样重要,对于稳定的功率输出和长的使用寿命而言,因此在苛刻的条件下至关重要。然而,由于不可避免的性能下降和组件不可避免的损坏,极端条件下的能量存储仍然是一个巨大的挑战。在这里,我们报告了高温操作,柔性超级电容器(f-SCs),它们可以在恶劣的电化学,机械和热条件下提供可靠的功率输出和极高的耐用性。出色的电容特性(例如,速率能力提高了40%,并且在160摄氏度时的最大电容为170 F g(-1)和18.7 mF cm(-2))归因于高温下的离子迁移。在高温下运行和/或在高于100摄氏度的高温下以静态和动态模式进行柔韧性测试时,f-SCs表现出100000次循环(> 93%的初始电容值)的极端长期稳定性和机械耐久性经过数百次弯曲循环后(弯曲角度为60-180度)。即使在120摄氏度下,串联串联和并联f-SC的通用设计也被证明可以在高温下提供理想的能量和功率要求。

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