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Ti3C2Tx MXene compounds for electrochemical energy storage

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Abstract Since their discovery in 2011, MXene compounds, and in particular the Ti3C2-based phases, have gained increasing interest from researchers leading to over 2,000 scientific works in 2020. The peculiar… Click to show full abstract

Abstract Since their discovery in 2011, MXene compounds, and in particular the Ti3C2-based phases, have gained increasing interest from researchers leading to over 2,000 scientific works in 2020. The peculiar morphological, charge transport, and surface properties make the MXenes ideal materials for energy storage applications such as active material in alkaline ion batteries and supercapacitors, as conductive or buffer agent in composite electrodes for high energy applications, and as electrocatalytic materials for oxygen evolution or redox flow batteries. Among this almost endless literature, this work focuses on 5 recent articles (2019/2020) that summarize the potential of MXenes in different energy storage applications, also resuming the most promising preparatory routes regarding industrial scalability.

Keywords: energy storage; compounds electrochemical; mxene compounds; ti3c2tx mxene; energy

Journal Title: Current Opinion in Electrochemistry
Year Published: 2021

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