MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University, 35 Qinghua East Road, Haidian, 100083, Beijing, China.
Dalton Trans. 2020 Jun 21;49(23):7807-7819. doi: 10.1039/d0dt01030h. Epub 2020 May 28.
In this work, we developed a novel strategy to couple chrysanthemum-like NiCoSin situ-grown MXene hybrids into a three-dimensional (3D) sandwich architecture hybrid as an electrode material for high-performance asymmetric supercapacitors and non-enzymatic HO sensors. In the 3D sandwich architecture hybrid, the NiCoS particles were encapsulated by MXene layers, which enhanced the interlayer space of MXene, significantly improving the electrochemical properties. In particular, the MXene/NiCoS 1 : 2 electrode achieved a specific capacitance of 1266 F g at 0.5 A g and maintained 95.21% of its initial value after 10 000 cycles. Furthermore, an asymmetrical supercapacitor was also fabricated using MXene/NiCoS 1 : 2 as the positive electrode and activated carbon (AC) as the negative electrode (MXene/NiCoS 1 : 2//AC), which exhibited exceptional electrochemical performance. MXene/NiCoS 1 : 2//AC exhibited a large specific capacitance of 621 F g at 0.5 A g and energy density of 72.82 W h kg at a power density of 0.635 kW kg. In addition, MXene/NiCoS 1 : 2 was employed as a non-enzymatic sensor for the electrochemical detection of HO, which exhibited a high sensitivity of 0.267 μA μM cm and noteworthy low detection limit of 0.193 μM based on 3 signal-noise ratios. This research provides a facile route for the in situ growth of bimetallic sulfides on MXenes as electrode materials for energy storage and electrochemical detection.
在这项工作中,我们开发了一种将类雏菊形貌的 NiCoSin 原位生长 MXene 杂化物耦合到三维(3D)夹层结构杂化物中的新策略,作为用于高性能不对称超级电容器和非酶 HO 传感器的电极材料。在 3D 夹层结构杂化物中,NiCoS 颗粒被 MXene 层包裹,这增强了 MXene 的层间空间,显著改善了电化学性能。特别是,MXene/NiCoS 1:2 电极在 0.5 A g 时具有 1266 F g 的比电容,并在 10000 次循环后保持其初始值的 95.21%。此外,还使用 MXene/NiCoS 1:2 作为正极和活性炭 (AC) 作为负极(MXene/NiCoS 1:2//AC)制造了不对称超级电容器,其表现出卓越的电化学性能。MXene/NiCoS 1:2//AC 在 0.5 A g 时具有 621 F g 的大比电容和 72.82 W h kg 的能量密度,在 0.635 kW kg 的功率密度下。此外,MXene/NiCoS 1:2 被用作 HO 的电化学检测的非酶传感器,其基于 3 个信噪比表现出 0.267 μA μM cm 的高灵敏度和 0.193 μM 的低检测限。这项研究为在 MXenes 上原位生长双金属硫化物作为储能和电化学检测的电极材料提供了一种简便的途径。