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Carbon nanotube/metal-sulfide composite flexible electrodes for high-performance quantum dot-sensitized solar cells and supercapacitors

机译:用于高性能量子点敏化太阳能电池和超级电容器的碳纳米管/金属硫化物复合柔性电极

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摘要

Carbon nanotubes (CNT) and metal sulfides have attracted considerable attention owing to their outstanding properties and multiple application areas, such as electrochemical energy conversion and energy storage. Here we describes a cost-effective and facile solution approach to the preparation of metal sulfides (PbS, CuS, CoS, and NiS) grown directly on CNTs, such as CNT/PbS, CNT/CuS, CNT/CoS, and CNT/NiS flexible electrodes for quantum dot-sensitized solar cells (QDSSCs) and supercapacitors (SCs). X-ray photoelectron spectroscopy, X-ray diffraction, and transmission electron microscopy confirmed that the CNT network was covered with high-purity metal sulfide compounds. QDSSCs equipped with the CNT/NiS counter electrode (CE) showed an impressive energy conversion efficiency (η) of 6.41% and remarkable stability. Interestingly, the assembled symmetric CNT/NiS-based polysulfide SC device exhibited a maximal energy density of 35.39 W h kg−1 and superior cycling durability with 98.39% retention after 1,000 cycles compared to the other CNT/metal-sulfides. The elevated performance of the composites was attributed mainly to the good conductivity, high surface area with mesoporous structures and stability of the CNTs and the high electrocatalytic activity of the metal sulfides. Overall, the designed composite CNT/metal-sulfide electrodes offer an important guideline for the development of next level energy conversion and energy storage devices.
机译:碳纳米管(CNT)和金属硫化物由于其出色的性能和多种应用领域(例如电化学能量转换和能量存储)而备受关注。在这里,我们描述了一种经济高效且简便的解决方案,用于制备直接在CNT上生长的金属硫化物(PbS,CuS,CoS和NiS),例如CNT / PbS,CNT / CuS,CNT / CoS和CNT / NiS用于量子点敏化太阳能电池(QDSSC)和超级电容器(SC)的柔性电极。 X射线光电子能谱,X射线衍射和透射电子显微镜证实,CNT网络覆盖有高纯度的金属硫化物化合物。装有CNT / NiS对电极(CE)的QDSSC的能量转换效率(η)高达6.41%,并且具有出色的稳定性。有趣的是,组装的对称CNT / NiS基多硫化物SC器件与其他CNT /金属相比,最大能量密度为35.39 W h kg -1 ,在1,000次循环后具有优异的循环耐久性和98.39%的保留率。 -硫化物。复合材料性能的提高主要归因于良好的导电性,具有介孔结构的高表面积和CNT的稳定性以及金属硫化物的高电催化活性。总体而言,设计的复合CNT /金属硫化物电极为开发下一级能量转换和能量存储设备提供了重要指导。

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