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Recent advances in the synthesis and electrocatalytic application of MXene materials. | LitMetric

Recent advances in the synthesis and electrocatalytic application of MXene materials.

Chem Commun (Camb)

College of Materials Science and Engineering, Sichuan University, Chengdu 610065, China.

Published: March 2023

AI Article Synopsis

  • MXenes are advanced two-dimensional materials known for their impressive optical, electric, and magnetic properties, with over 30 different types due to various combinations of transition metals and C/N.
  • This review covers the last five years of research on MXenes, focusing on their preparation methods (bottom-up and top-down) and their significant roles in electrocatalytic applications like hydrogen evolution and carbon dioxide reduction reactions.
  • The study highlights that modifying MXenes by changing functional groups or combining them with other materials can enhance their electrocatalytic performance, emphasizing the need for environmentally friendly production methods, especially for MXene nitrides.

Article Abstract

MXenes are a class of two-dimensional materials with a graphene-like structure, which have excellent optical, biological, thermodynamic, electrical and magnetic properties. Due to the diversity resulting from the combination of transition metals and C/N, the MXene family has expanded to more than 30 members and been applied in many fields with broad application prospects. Among their applications, electrocatalytic applications have achieved many breakthroughs. Therefore, in this review, we summarize the reports on the preparation of MXenes and their application in electrocatalysis published in the last five years and describe the two main methods for the preparation of MXenes, , bottom-up and top to bottom synthesis. Different methods may change the structure or surface termination of MXenes, and accordingly affect their electrocatalytic performance. Furthermore, we highlight the application of MXenes in the electrocatalytic hydrogen evolution reaction (HER), oxygen evolution reaction (OER), oxygen reduction reaction (ORR), carbon dioxide reduction reaction (CORR), nitrogen reduction reaction (NRR), and multi-functionalization. It can be concluded that the electrocatalytic properties of MXenes can be modified by changing the type of functional groups or doping. Also, MXenes can be compounded with other materials to produce electronic coupling and improve the catalytic activity and stability of the resulting composites. In addition, MoC and TiC are two types of MXene materials that have been widely studied in the field of electrocatalysis. At present, research on the synthesis of MXenes is focused on carbides, whereas research on nitrides is rare, and there are no synthesis methods meeting the requirements of green, safety, high efficiency and industrialization simultaneously. Therefore, it is very important to explore environmentally friendly industrial production routes and devote more research efforts to the synthesis of MXene nitrides.

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Source
http://dx.doi.org/10.1039/d2cc06418aDOI Listing

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