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        Review on Ti3C2-based MXene Nanosheets for Flexible Electrodes

        Jagan Singh Meena,Su Bin Choi,Jong-Woong Kim 대한금속·재료학회 2022 ELECTRONIC MATERIALS LETTERS Vol.18 No.3

        MXenes have recently gained significant attention owing to their exceptional metallic electrical conductivity, good chemicalinertness, and excellent hydrophilicity. Among the various two-dimensional MXenes, which are made up of atomic layers oftransition metal carbides and nitrides, Ti3C2Txis one of the most promising and versatile materials for application in variouselectronic devices. In fact, there has been a rising trend of using Ti3C2-based MXene nanosheets as flexible electrodes for differentelectronic devices. Ti3C2-based MXenes have shown the potential to be utilized as flexible and conductive electrodes inelectrical energy storage devices, light-emitting devices, photodetectors, and flexible strain sensors. Thus, this review focuseson Ti3C2-based MXene nanosheets and MXene/polymer composite films, which are widely used as flexible and electrodelayers in electronic devices, such as supercapacitors, solar cells, light-emitting devices, energy harvesting devices, powergenerating devices, and flexible strain sensors. First, we have briefly discussed the structure, conductivity, work function,and synthesis processes of Ti3C2nanosheets based on the most recently published research articles. Then, we discussed therecent advances in the modification methods for Ti3C2-based MXenes to render them suitable for application as conductiveelectrode layers in various flexible electronic devices. The last section highlights the current challenges in the developmentand application of Ti3C2-based MXenes and future perspectives.

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