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A novel intercalation pseudocapacitive electrode material: VO(OH)_2/CNT composite with cross-linked structure for high performance flexible symmetric supercapacitors

机译:一种新型插层拟电容电极材料:具有交联结构的VO(OH)_2 / CNT复合材料,用于高性能柔性对称超级电容器

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Fabrication of a novel electrode material with efficient storage mechanism is a desirable strategy to build a better supercapacitors. Herein, a novel intercalation pseudocapacitance material, VO(OH)(2)/CNT binary composite with cross-linked structure, is first successfully synthesized by a facile one-step hydrothermal method. This composite combines the intrinsic positive traits of each component, in which the synergistic efforts greatly enhance to achieve a considerable electrochemical performance. In the three-electrode system, VO(OH)(2)/CNT composite electrode exhibits a capacitance of 256 F.g(-1) (512C.g(-1)) at 0.5 A.g(-1) within the wide potential range of - 0.8-1.2 V. More remarkably, the VO(OH)(2)/CNT-based flexible symmetric supercapacitor delivers a high energy density of 32.08 Wh.kg(-1) at a power density of 63.65 W.kg(-1) in a large operating voltage of 2.2 V. As well as, it performs a well cycling stability that the capacitance retention is about 90% after 3000 cycles. For the factual application measurement, two devices in series can light red LED for 5 min after charging 100 s. This work enriches the exploration of vanadium oxyhydroxides' pseudocapaicitance performance, which is of great significance to the future application of vanadium oxyhydroxides in energy storage.
机译:具有有效存储机制的新型电极材料的制造是构建更好的超级电容器的理想策略。在这里,一种新型的插层拟电容材料,具有交联结构的VO(OH)(2)/ CNT二元复合材料,首先通过一种简便的一步水热方法成功地合成了。该复合材料结合了每种组分的固有正性,在其中的协同作用大大增强,以实现可观的电化学性能。在三电极系统中,VO(OH)(2)/ CNT复合电极在宽电位范围内的0.5 Ag(-1)处显示256 Fg(-1)(512C.g(-1))的电容。 -0.8-1.2 V.更显着的是,基于VO(OH)(2)/ CNT的柔性对称超级电容器在功率密度为63.65 W.kg(-1)时可提供32.08 Wh.kg(-1)的高能量密度。 )在2.2 V的大工作电压下工作。此外,它还具有良好的循环稳定性,在3000次循环后电容保持率约为90%。为了进行实际应用测量,在充电100秒后,两个串联的设备可以点亮红色LED 5分钟。这项工作丰富了对羟基氧化钒的假电容性能的探索,这对于羟基氧化钒在能量存储中的未来应用具有重要意义。

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