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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Hierarchical NiCoP nanosheet arrays with enhanced electrochemical properties for high-performance wearable hybrid capacitors
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Hierarchical NiCoP nanosheet arrays with enhanced electrochemical properties for high-performance wearable hybrid capacitors

机译:具有增强电化学性能的分层Nicop纳米阵列,适用于高性能可穿戴式混合电容器

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Transition metal phosphides (TMPs) are battery-typed materials with superior conductivity and redox activity, thereby making them promising in fiber-shaped hybrid capacitors (FSHCs). Yet designed synthesis of nanostructured TMPs on conductive fiber substrate as binder-free electrode is essential to improve their electrochemical performance. This work proposes an efficient strategy to directly grow hierarchical NiCoP nanosheet arrays (NSAs) on carbon nanotube fibers (CNTFs) by using a hydrothermal process and subsequent gas-solid phosphorization. Benefiting from the ordered nanosheet structure, the NiCoP/CNTF electrode exhibits a specific capacity of 0.711 mAh cm(-2) at a current density of 1 mA cm(-2). Matching this electrode with a negative electrode of CNTF supported vanadium nitride (VN) NSAs, we fabricated a high-performance twisted FSHC with a maximum operating voltage of 1.6 V. Owing to the ultrahigh electrochemical performance of the hybrid fiber electrodes, the FSHC device delivers a high specific capacitance of 325.6 mF cm(-2)(108.53 F cm(-3)) at the current density of 1 mA cm(-2), and achieves an energy density of 115.78 mu Wh cm(-2). Moreover, it displays excellent flexibility with negligible capacitance loss after 5000 bending cycles. Thus, this work elucidates a feasible route to construct NiCoP-based fiber electrodes for wearable energy storage devices. (C) 2018 Elsevier B.V. All rights reserved.
机译:过渡金属磷化物(TMPS)是电池类型的材料具有优异的导电性和氧化还原活性,从而使得它们在纤维形混合电容器(FSHCs)看好。导电性纤维基材不含粘合剂的电极上的纳米结构TMPS的再设计合成是必不可少的,以提高其电化学性能。这项工作提出了一种有效的策略,以通过使用水热方法和随后的气体 - 固体磷化直接生长在碳纳米管纤维(CNTFs)分层NiCoP纳米片阵列(体育总会)。从有序纳米片结构中受益,所述NiCoP / CNTF电极表现出在1毫安厘米(-2)的电流密度的0.711毫安厘米(-2)的比容量。匹配该电极与CNTF的负电极支持的氮化钒(VN)体育总会,我们制造了高性能的扭曲FSHC 1.6 V.超欠的最大操作电压的混合纤维电极的超高电化学性能,所述FSHC装置输送的325.6 mF及其厘米(-2)(108.53厘米˚F(-3))以1毫安厘米(-2)电流密度高的比电容,并且实现的115.78亩瓦厘米(-2)的能量密度。此外,它显示5000个弯曲循环后具有可忽略的电容损失优异的柔韧性。因此,该工作阐明一个可行路线来构造可穿戴的能量存储装置的基于NiCoP纤维的电极。 (c)2018年elestvier b.v.保留所有权利。

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