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Studying the substrate effects on energy storage abilities of flexible battery supercapacitor hybrids based on nickel cobalt oxide and nickel cobalt oxide@nickel molybdenum oxide

机译:基于镍钴氧化物和镍钴氧化镍的柔性电池超级电容器杂种能量储存能力研究基底效应

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Assembly of the efficient flexible energy storage devices is indispensable for widening the application of the wearable electronics which require electricity for operating. The flexible substrate such as Ni foam and carbon cloth is one of the key components for establishing flexible energy storage devices. However, the effects of the substrate for growing the active materials on the physical and electrochemical properties of the energy storage devices are rarely investigated. In this work, the Ni foam and the carbon cloth are used as the flexible substrates for fabricating the positive electrodes composed of the nickel cobalt oxide and the nickel cobalt oxide@nickel molybdenum oxide active materials for battery supercapacitor hybrids. The larger surface area and the pore volume are obtained for the electrodes based on the carbon cloth with the 360 degrees growing sites, whereas the higher electrical conductivity and extra nickel hydroxide and nickel oxide are obtained for the electrodes based on the Ni foam. The best electrochemical performance is obtained for the battery supercapacitor hybrid based on the Ni foam substrate with the nickel cobalt oxide@nickel molybdenum oxide as the active material. This device provides the highest energy density of 11.90 Wh kg(-1) at the maximum power density of 800 W kg(-1). This work proposes a novel investigation of the substrate effect on the energy storage ability for the battery supercapacitor hybrids. The unique physical properties of the electrodes composed of the Ni foam and carbon cloth flexible substrates are also understood. Another feasible ways are expected to apply for improving the energy storage ability of the battery supercapacitor hybrids with the understanding of the flexible substrate features. (C) 2019 Elsevier Ltd. All rights reserved.
机译:有效的柔性储能装置的组装是不可或缺的,可扩大需要电力的可穿戴电子设备进行操作。诸如Ni泡沫和碳布的柔性基板是用于建立柔性能量存储装置的关键部件之一。然而,用于在能量储存装置的物理和电化学性质上生长用于生长活性材料的基材的效果很少研究。在这项工作中,Ni泡沫和碳布用作用于制造由镍钴氧化物和镍钴氧化镍的正电极的柔性基板,用于电池超级电容器杂种。基于碳布的电极获得较大的表面积和孔体积,其具有360度生长位点,而基于Ni泡沫的电极获得较高的导电性和额外的氢氧化镍和氧化镍。基于Ni泡沫基材与镍钴氧化镍氧化镍作为活性材料,获得最佳电化学性能。该装置以800W kg(-1)的最大功率密度提供11.90WH kg(-1)的最高能量密度。这项工作提出了对电池超级电容器杂种的储能能力的基材效应的新颖调查。还应理解由Ni泡沫和碳布柔性基板组成的电极的独特物理性质。预计通过理解柔性基板特征,预计将应用另一种可行的方式来提高电池超级电容器混合动力车的能量储存能力。 (c)2019 Elsevier Ltd.保留所有权利。

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