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Surface-reconstructed formation of hierarchical TiO2 mesoporous nanosheets with fast lithium-storage capability

机译:Surface-reconstructed分层的形成二氧化钛介孔nanosheets快lithium-storage能力

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摘要

Two-dimensional (2D) materials with a surface hierarchy and heterostructure offer infusive opportunities as high-rate electrodes in energy-storage/-conversion technologies due to their largely exposed active sites and shortened diffusion distance that are beneficial for mass/ion transfer. However, these 2D materials are still difficult to be synthesized due to the lack of a rational approach to design a surficial hierarchical heterostructure on 2D nanostructures. Herein, we explore a top-down strategy for the simple synthesis of surface-engineered TiO2 nanosheets with a large surface area, abundant open pores and TiO2-B/anatase heterointerfaces under mild conditions. Benefiting from the structural features of high electrode/electrolyte contact areas and short Li+/electron transport pathways, the surface-engineered TiO2 nanosheet material, tested as the lithium-storage electrode, show fast lithium uptake/ release properties. A specific capacity of 149 mA h g~(-1) is observed at a high rate of 10 A g~(-1), and long-term operating stability is shown by delivering 110 mA h g~(-1) at 6 A g~(-1) upon 1000 cycles. Furthermore, the as-assembled lithium-ion capacitor using surface-engineered TiO2 nanosheets exhibits high energy density at high rates and possesses very stable cycling performance (~80% capacity retention at 4 A g~(-1) after 10 000 cycles). This study may pave a new way for designing novel 2D nanoarchitectures with a surface hierarchical structure for high-power energy-storage applications.
机译:二维(2 d)材料表面层次结构和异质结构提供了令人兴奋的作为高效的电极的机会由于储能/转换技术他们很大程度上暴露出活跃的网站和缩短有利于扩散距离质量/离子转移。仍然很难合成由于缺乏理性的方法来设计一个地表在2 d分级异质结构纳米结构。简单的合成策略surface-engineered二氧化钛nanosheets大表面积,打开毛孔,丰富TiO2-B /锐钛矿异质结面下温和条件。高电极/电解液的接触特性地区和短李+ /电子传递途径,surface-engineered二氧化钛nanosheet材料,测试lithium-storage电极,表演快速吸收锂/释放特性。具体的容量149毫安h g ~(1)是观察在一个较高的率10 g ~(1),和长期的操作稳定显示交付110 mAh g ~ (1) 6 g ~(1)在1000周期。此外,as-assembled锂离子电容器使用surface-engineered二氧化钛nanosheets展品高能量密度高利率和拥有非常稳定的骑自行车性能(容量保持在4 ~ 80%g ~(1)经过10 000周期)。设计新颖的2 d的一种新方法nanoarchitectures表面层次结构大功率储能应用程序。

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