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Chalcogenated-Ti_3C_2X_2 MXene (X = 0, S, Se and Te) as a high-performance anode material for Li-ion batteries

机译:硫代Ti_3C_2X_2 MXene(X = 0,S,Se和Te)作为锂离子电池的高性能负极材料

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摘要

Limited interlayer spacing and undesired surface functional group on Ti3C2 MXene surface impede the Li-ion accessibility and mobility, leading to inferior Li-storage capacity. Fine-tuning of the surface chemistry is considered as an effective approach to modulate the properties of solid surface and interface, which is extremely important for the two-dimensional (2D) electrode materials, where Li-ions residing on the surface. Herein, based on first-principle calculations, surface chalcogenation of Ti3C2 MXene, resulting in the formation of Ti3C2X2 (X = O, S, Se and Te), has been proposed to improve the electrochemical performance of Ti3C2 anode in Li-ion batteries. The results reveal thatTi(3)C(2)X(2) exhibits metallic conductivity with improved mechanical strength, which renders enhanced rate performance and endures repeated lattice expansion and contraction during charge/discharge process, respectively. As compared to Ti3C2O2, Ti3C2S2 and Ti3C2Se2 render enhanced Li-ion storage and mobility with a theoretical Li storage capacity of 462.6 and 329.3 mA h/g and diffusion energy barrier of 0.25 and 0.15 eV, respectively. Moreover, chalcogenation yields expanded interlayer spacing, which improves the Li-ion accessibility in Ti3C2X2. The present study demonstrates that S- and Se- terminated Ti3C2 MXenes are promising anode materials with high capacity, low diffusion barrier and lower open circuit voltage (OCV) for next-generation Li-ion batteries.
机译:Ti3C2 MXene表面上有限的层间间距和不希望的表面官能团阻碍了Li离子的可及性和迁移率,导致Li的储能能力较差。表面化学性质的微调被认为是调节固体表面和界面特性的有效方法,这对于二维(2D)电极材料极为重要,因为锂离子存在于表面上。在此,基于第一性原理计算,已经提出了Ti 3 C 2 MXene的表面硫属元素化,从而形成Ti 3 C 2 X 2(X = O,S,Se和Te),以改善Li离子电池中Ti 3 C 2阳极的电化学性能。结果表明,Ti(3)C(2)X(2)表现出具有改善的机械强度的金属导电性,从而提高了倍率性能,并在充电/放电过程中分别承受了反复的晶格膨胀和收缩。与Ti3C2O2相比,Ti3C2S2和Ti3C2Se2具有增强的锂离子存储和迁移率,理论锂存储容量分别为462.6和329.3 mA h / g,扩散能垒分别为0.25和0.15 eV。此外,硫属元素化作用产生更大的层间距,从而改善了Ti3C2X2中锂离子的可及性。本研究表明,S和Se端接的Ti3C2 MXene是有前途的阳极材料,具有高容量,低扩散势垒和较低的开路电压(OCV),可用于下一代锂离子电池。

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