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Synthesis of 2D Ti3C2Tx MXene and MXene-based composites for versatile pressure and stress sensors

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As an necessary machine in versatile and wearable microelectronics, versatile sensors have gained a variety of consideration because of their extensive software in human movement monitoring, human–laptop interactions and healthcare fields. The preparation of versatile sensors with superior sensing efficiency and a easy course of continues to be a difficult purpose pursued by scientific researchers everywhere in the world. The rising two-dimensional (2D) Ti3C2Tx MXene materials, having the traits of excessive metallic conductivity, good flexibility, glorious dispersibility and hydrophilicity, is appropriate for versatile sensors as a conductive sensing materials. On this assessment, the preparation methods of Ti3C2Tx are summarized. Mixed with its analysis progress in versatile sensors, the preparation strategies, sensing efficiency, working mechanism and purposes of Ti3C2Tx versatile sensors with totally different machine architectures are reviewed.

Graphical abstract: Synthesis of 2D Ti3C2Tx MXene and MXene-based composites for flexible strain and pressure sensors

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