Two‐Dimensional MXene‐Based Electrocatalysts: Challenges and Opportunities

Author:

Kaleem Shabbir Muhammad12,Arif Fozia13,Asghar Haleema3,Irum Memon Sanam4,Khanum Urooj1,Akhtar Javeed1,Ali Akbar5,Ramzan Zeeshan1,Aziz Aliya2,Memon Ayaz Ali6,Hussain Thebo Khalid17ORCID

Affiliation:

1. Functional nanomaterials Lab (FNL) Department of Chemistry Mirpur University of Science and Technology (MUST) -10250 (AJK) Mirpur Pakistan

2. Department of Chemistry University of Kotli Kotli AJK 11100 Pakistan

3. Government Graduate College for Women Jhelum Jhelum 49600 Pakistan

4. Department of Textile Engineering Mehran University of Engineering and Technology Jamshoro

5. Institute of Process Engineering Chinese Academy of Sciences Beijing China

6. National Centre of Excellence in Analytical Chemistry University of Sindh Jamshoro Pakistan

7. Institute of Metal Research Chinese Academy of Sciences Shenyang Wenhua Road China

Abstract

AbstractMXene, regarded as cutting‐edge two‐dimensional (2D) materials, have been widely explored in various applications due to their remarkable flexibility, high specific surface area, good mechanical strength, and interesting electrical conductivity. Recently, 2D MXene has served as a ideal platform for the design and development of electrocatalysts with high activity, selectivity, and stability. This review article provides a detailed description of the structural engineering of MXene‐based electrocatalysts and summarizes the uses of 2D MXene in hydrogen evolution reactions, nitrogen reduction reactions, oxygen evolution reactions, oxygen reduction reactions, and methanol/ethanol oxidation. Then, key issues and prospects for 2D MXene as a next‐generation platform in fundamental research and real‐world electrocatalysis applications are discussed. Emphasis will be given to material design and enhancement techniques. Finally, future research directions are suggested to improve the efficiency of MXene‐based electrocatalysts.

Publisher

Wiley

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