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首页> 外文期刊>Journal of Colloid and Interface Science >Beyond hierarchical mixed nickel-cobalt hydroxide and ferric oxide formation onto the green carbons for energy storage applications
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Beyond hierarchical mixed nickel-cobalt hydroxide and ferric oxide formation onto the green carbons for energy storage applications

机译:除了分层混合镍 - 氢氧化物和氧化铁形成到绿色碳中,用于储能应用

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摘要

To attain superior energy density concurrently with high power density, high-performance supercapacitors have been developed. Herein an innovative strategy has been adopted to fabricate unique binder free electrodes composed of a unique porous structure of binary metal carbonate hydroxide nanomace-decorated hydrothermal porous carbon spheres (PCSs). Hierarchical nickel-cobalt carbonate hydroxide (NiCOCH) nanomaces, directly grown on PCSs, are used as positive electrodes for supercapacitors fabrication. Furthermore, Fe2O3@PCS composites, having benefits of highly reversible redox reaction in the negative potential window and highly porous structure, are employed as the negative electrode in the fabrication of the asymmetric supercapacitors (ASCs). The assembled NiCoCH@PCS// Fe2O3@PCS asymmetric devices with a wide electrochemical potential window not only have the merit of high energy and power densities but also receive benefits from remarkable cycle stability. These encouraging outcomes that are mutually beneficial, make these fabricated ASCs significantly ideal for highperformance electronics. (C) 2021 Elsevier Inc. All rights reserved.
机译:为了在高功率密度的同时获得更高的能量密度,人们开发了高性能超级电容器。本文采用了一种创新的策略来制备独特的无粘结剂电极,该电极由二元金属碳酸盐氢氧化物纳米微粒修饰的水热多孔碳球(PCS)的独特多孔结构组成。直接在PCS上生长的分级碳酸镍钴(NiCOCH)纳米微粒用作超级电容器制造的正极。此外Fe2O3@PCS复合材料在负电位窗口中具有高度可逆的氧化还原反应和高度多孔的结构,被用作不对称超级电容器(ASC)的负极。集合的NiCoCH@PCS// Fe2O3@PCS具有宽电化学电位窗口的不对称器件不仅具有高能量和功率密度的优点,而且还具有显著的循环稳定性。这些令人鼓舞的结果是互利的,使这些制造的ASC成为高性能电子产品的理想选择。(c)2021爱思唯尔公司保留所有权利。

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