首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Monolayer titanium carbide hollow sphere arrays formed via an atomic layer deposition assisted method and their excellent high-temperature supercapacitor performance
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Monolayer titanium carbide hollow sphere arrays formed via an atomic layer deposition assisted method and their excellent high-temperature supercapacitor performance

机译:通过原子层沉积辅助方法形成的单层碳化钛空心球阵列及其优异的高温超级电容器性能

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摘要

The directed construction of metal carbide arrays with a precise size and specific morphology still remains a great challenge. Herein we report a powerful atomic layer deposition (ALD)-assisted template synthesis strategy for the preparation of monolayer titanium carbide (TiC) hollow sphere arrays on a conductive substrate. Attractive properties, including a porous hollow structure and high electrical conductivity, have been achieved with the TiC hollow sphere arrays. When they are characterized as the electrodes of high-temperature (65 degrees C) organic supercapacitors, impressive performance including high capacitance, superior long-term cycle life (98% retention after 75 000 cycles) and good high-rate ability are demonstrated. Fast reaction kinetics and a quick response time for ion transportation are also proven for the TiC hollow sphere arrays. It is anticipated that our electrode design strategy may trigger new enthusiasm for advanced metal carbides for energy storage and electro-catalysis.
机译:具有精确尺寸和特定形态的金属碳化物阵列的定向构造仍然是巨大的挑战。在这里,我们报告了一种强大的原子层沉积(ALD)辅助模板合成策略,用于在导电基底上制备单层碳化钛(TiC)空心球阵列。 TiC空心球阵列已实现了吸引人的性能,包括多孔空心结构和高电导率。当将其表征为高温(65摄氏度)有机超级电容器的电极时,其令人印象深刻的性能包括高电容,出色的长期循环寿命(在75000次循环后保持98%的保留时间)和良好的高倍率能力。 TiC空心球阵列还证明了快速的反应动力学和离子传输的快速响应时间。可以预期,我们的电极设计策略可能会激发对用于能量存储和电催化的高级金属碳化物的新热情。

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