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Wafer-Scale Lateral Self-Assembly of Mosaic Ti3C2Tx MXene Monolayer Films

机译:马赛克TI3C2TX MXENE单层膜的晶圆级横向自组装

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摘要

Bottom-up assembly of two-dimensional (2D) materials into macroscale morphologies with emergent properties requires control of the material surroundings, so that energetically favorable conditions direct the assembly process. MXenes, a class of recently developed 2D materials, have found new applications in areas such as electrochemical energy storage, nanoscale electronics, sensors, and biosensors. In this paper, we present a lateral self-assembly method for wafer-scale deposition of a mosaic-type 2D MXene flake monolayer that spontaneously orders at the interface between two immiscible solvents. ReaxFF molecular dynamics simulations elucidate the interactions of a MXene flake with the solvents and its stability at the liquid/liquid interface, the prerequisite for MXene flakes self-assembly at the interface. Moreover, facile transfer of this monolayer onto a flat substrate (Si, glass) results in high-coverage monolayer films with uniform thickness and homogeneous optical properties. Multiscale characterization of the resulting films reveals the mosaic structure and sheds light on the electronic properties of the films, which exhibit good electrical conductivity over cm-scale areas.
机译:将二维(2D)材料自底向上组装成具有涌现特性的宏观形态需要控制材料周围环境,以便能量有利的条件指导组装过程。MXenes是一类新近开发的二维材料,在电化学储能、纳米电子、传感器和生物传感器等领域有着新的应用。在本文中,我们提出了一种横向自组装方法,用于在两种不互溶溶剂之间的界面上自发排列的镶嵌型2D MXene薄片单层的晶圆级沉积。ReaxFF分子动力学模拟阐明了MXene薄片与溶剂的相互作用及其在液/液界面的稳定性,这是MXene薄片在界面上自组装的先决条件。此外,将该单层轻松转移到平坦衬底(硅、玻璃)上可获得厚度均匀且光学性质均匀的高覆盖率单层膜。所得薄膜的多尺度表征揭示了马赛克结构,并揭示了薄膜的电子特性,在厘米尺度上表现出良好的导电性。

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