首页> 外文期刊>Journal of Energy Storage >Binder-free honeycomb-like FeMoO_4 nanosheet arrays with dual properties of both battery-type and pseudocapacitive-type performances for supercapacitor applications
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Binder-free honeycomb-like FeMoO_4 nanosheet arrays with dual properties of both battery-type and pseudocapacitive-type performances for supercapacitor applications

机译:无粘合剂蜂窝状FeMoO_4纳米片阵列,具有超级电容器应用的电池型和伪电容型双重性能

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In order to enhance the energy density of a hybrid supercapacitor, it is urgently required to develop unique positive and negative electroactive materials. Metal molybdates nanostructures hold great promise as high-performance electrode materials for next-generation energy storage devices. Herein, iron molybdate honeycomb-like nanosheet arrays (FeMoO4 HNSAs) are successfully grown on nickel foam via a one-step chemical bath deposition approach, which can be effectively used as binder-free positive and negative electrode material. The morphological, composition and structural properties of FeMoO4 FNSAs are examined by scanning electron microscopy, transmission electron microscopy, X-ray photoelectron spectroscopy, and X-ray diffraction measurements. The honeycomb-like structure composed of interconnected ultrathin nanosheets and the large space between interconnected nanosheets can serve as an ion reservoir, which provides abundant active sites for redox reactions and promotes the rapid diffusion of electrolyte ions. The electrochemical measurements of the FeMoO4 HNSAs are investigated in positive and negative potential regions using a three-electrode setup. The cyclic voltammetry and galvanostatic charge/discharge measurements envisage both battery-type and pseudocapacitive behavior of FeMoO4 HNSAs electrode. As a battery-type material, the FeMoO4 HNSAs electrode exhibits superior electrochemical performances with a high specific capacity (similar to 158.39 mA h g(-1) at 2 A g(-1)), excellent rate capability (similar to 88.08% retains even at 8 A g(-1)), and outstanding cycling life (similar to 90.76% at 6 A g(-1) over 4000 cycles), respectively. Interestingly, the FeMoO4 HNSAs electrode tested in negative potential region, as a pseudocapacitive electrode material, the FeMoO4 HNSAs achieves a high specific capacitance of 477.47 F g(-1) at 2 A g(-1), excellent rate capability of 95.54% even at 8 A g(-1), and superior cycling stability with 92.37% capacity retention after 4000 cycles at 6 A g(-1). This work demonstrates that the FeMoO4 HNSAs electrode provides a promising positive and negative electrode material for the energy storage applications in the future.
机译:为了提高混合超级电容器的能量密度,迫切需要开发独特的正负电活性材料。金属钼酸盐纳米结构作为下一代储能设备的高性能电极材料具有广阔的前景。在这里,钼酸铁蜂窝状纳米片阵列(FeMoO4 HNSAs)通过一步化学浴沉积方法成功地在泡沫镍上生长,可以有效地用作无粘合剂的正负电极材料。通过扫描电子显微镜,透射电子显微镜,X射线光电子能谱和X射线衍射测量来检查FeMoO4 FNSA的形态,组成和结构性能。由相互连接的超薄纳米片和相互连接的纳米片之间的大空间组成的蜂窝状结构可以用作离子库,为氧化还原反应提供丰富的活性位点,并促进电解质离子的快速扩散。 FeMoO4 HNSAs的电化学测量使用三电极设置在正和负电位区域中进行研究。循环伏安法和恒电流充电/放电测量可设想FeMoO4 HNSAs电极的电池类型和假电容行为。作为电池型材料,FeMoO4 HNSAs电极具有出众的电化学性能,具有较高的比容量(在2 A g(-1)时类似于158.39 mA hg(-1)),出色的倍率性能(甚至保留了88.08%的均匀性)在8 A g(-1)时)和出色的循环寿命(分别在4000个周期中相当于6 A g(-1)时的90.76%)。有趣的是,FeMoO4 HNSAs电极在负电势区域中进行了测试,作为伪电容电极材料,FeMoO4 HNSAs在2 A g(-1)时可达到477.47 F g(-1)的高比电容,出色的倍率甚至达到95.54%在8 A g(-1)时,具有出色的循环稳定性,在6 A g(-1)4000次循环后,容量保持率为92.37%。这项工作表明,FeMoO4 HNSAs电极可为将来的储能应用提供有希望的正负电极材料。

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