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Efficient Energy Conversion and Storage Based on Robust Fluoride‐Free Self‐Assembled 1D Niobium Carbide in 3D Nanowire Network

机译:基于鲁棒无氟自组装1D碳化物的3D纳米线网络有效的能量转换和储存

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Owing to their high robustness and conductivity, 2D transition metal carbides and nitrides known as MXenes are considered as a promising material class for electrochemical catalysis, energy conversion, and storage applications. Nevertheless, conventional hazardous fluoride‐based synthesis routes and the intense intralayer bonding restrict the development of MXenes. Herein, a fluoride‐free, facile, and rapid method for synthesizing self‐assembled 1D architecture from an MXene‐based compound is reported. The MXene nanowire (NW) not only provides a robust connection to the flexible substrate but also effectively increases the electrochemically active surface area. The kinetics‐favorable structure yields a boosted performance for the hydrogen/oxygen evolution reaction and the intake of the zinc ion. The 1D NW based on MXene compound maintains high stability in a quite low overpotential of 236 mV for 24 h without detachment from the substrate and manifests an exceptional high‐power density of 420 W kg?1 over 150 cycles as a flexible aqueous zinc ion battery. This work paves a novel and non‐toxic synthesis method for the 1D nanofiber structure from MXene composition and demonstrates its multifunctional applications for energy conversion and storage.
机译:由于它们的高稳健性和电导率,2D过渡金属碳化物和称为MxENes的氮化物被认为是用于电化学催化,能量转换和储存应用的有希望的材料类。然而,常规的危险氟化物的合成途径和强烈的intralayer键合限制了MxEnes的发育。本文,报道了一种从氟化物,容易性和用于从基于mxene的化合物合成自组装的1D架构的快速方法。 MXENE纳米线(NW)不仅提供与柔性基板的稳健连接,而且还有效地增加了电化学活性表面积。动力学良好的结构为氢/氧换气反应和锌离子的摄入产生升级性能。基于蒙薄的化合物的1D NW在236mV的相当低的过电位中保持高稳定性24小时,而不从基板脱离,表现出420Wkg≤1超过150个循环的特殊高功率密度,作为柔性锌离子电池。这项工作为来自MXENE组合物的1D纳米纤维结构铺平了一种新颖和无毒的合成方法,并证明了其用于能量转换和储存的多功能应用。

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