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首页> 外文期刊>Applied Surface Science >Constructing expanded ion transport channels in flexible MXene film for pseudocapacitive energy storage
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Constructing expanded ion transport channels in flexible MXene film for pseudocapacitive energy storage

机译:在柔性MXene膜中构建扩展的离子传输通道,用于伪电容储能

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摘要

2D transition metal carbide (MXene) based flexible films have received increasing attention in the application of energy storage for portable and wearable electronic devices. However, the self-restacking caused by Van der Waals interactions between the layers lead to insufficient access to allow the electrolyte ions to contact the active material. Herein, we rationally utilized the freeze-drying technique to prepare MXene film electrode for alleviating its self-restacking and improving the electrochemical performances. Through freeze-drying treatment, the frozen solvent molecules were removed by sublimation, and alleviating the adverse effect of van der Waals forces and contributing to the enlarged layer space. The constructed freeze-dried MXene (f-MXene) films generate unique porous architecture, which can provide highly efficient ion diffusion and transport channels. Consequently, the typical f-MXene-10 film exhibit good specific capacitance (341.5 F g(-1)/ 9 22.1 F cm(-3)at 1 A g(-1)) and desired capacitance retention of 60.4% from 1 to 10 A g(-1). Moreover, the assembled asymmetric device delivered a maximal gravimetric energy density of 6.1 Wh Kg(-1), volumetric energy density of 16.4 Wh L-1 and a good capacitance retention of 89.3% after 10,000 cycles. The rationally designed synthesizing route has attractive promise to promote MXene materials for diverse energy and environmental applications.
机译:基于2D过渡金属碳化物(MXene)的柔性膜在便携式和可穿戴电子设备的储能应用中受到越来越多的关注。然而,由层之间的范德华相互作用引起的自重堆积导致通路不足以允许电解质离子接触活性材料。在此,我们合理地利用冷冻干燥技术制备了MXene薄膜电极,以减轻其自重堆积和改善电化学性能。通过冷冻干燥处理,通过升华去除了冷冻的溶剂分子,从而减轻了范德华力的不利影响并有助于扩大层空间。所构造的冻干MXene(f-MXene)薄膜产生独特的多孔结构,可提供高效的离子扩散和传输通道。因此,典型的f-MXene-10膜表现出良好的比电容(在1 A g(-1)时为341.5 F g(-1)/ 9 22.1 F cm(-3)),并且期望的电容保持率为10.4至60.4%。 10 A g(-1)。此外,组装的非对称器件在10,000次循环后可提供最大重量能量密度6.1 Wh Kg(-1),体积能量密度16.4 Wh L-1和良好的电容保持率89.3%。合理设计的合成路线具有诱人的前景,可以推广MXene材料用于各种能源和环境应用。

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