Recent Advances in Non‐Ti MXenes: Synthesis, Properties, and Novel Applications

Author:

Khan Karim1234ORCID,Tareen Ayesha Khan5,Ahmad Waqas6,Hussain Iftikhar78,Chaudhry Mujeeb U.9,Mahmood Asif10,Khan Muhammad Farooq11,Zhang Han4,Xie Zhongjian12

Affiliation:

1. School of Electrical Engineering and Intelligentization Dongguan University of Technology Dongguan 523808 China

2. Shenzhen Nuoan Environmental and Safety Inc. Shenzhen 518107 China

3. Additive Manufacturing Institute Shenzhen University Shenzhen 518060 China

4. Shenzhen Engineering Laboratory of Phosphorene and Optoelectronics International Collaborative Laboratory of 2D Materials for Optoelectronics Science and Technology of Ministry of Education Institute of Microscale Optoelectronics Engineering Shenzhen University Shenzhen 518060 China

5. School of Mechanical Engineering Dongguan University of Technology Dongguan 523808 China

6. Institute of Fundamental and Frontier Sciences University of Electronic Science and Technology of China Chengdu 610054 China

7. Department of Mechanical Engineering City University of Hong Kong 83 Tat Chee Avenue Kowloon 999077 Hong Kong

8. A. J. Drexel Nanomaterials Institute and Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA

9. Department of Engineering Durham University Lower Mountjoy South Rd Durham DH1 3LE UK

10. School of Chemical and Biomolecular Engineering The University of Sydney Sydney 2006 Australia

11. Department of Electrical Engineering Sejong University Seoul 05006 Republic of Korea

12. Shenzhen Children's Hospital Clinical Medical College of Southern University of Science and Technology Shenzhen Guangdong 518038 P. R. China

Abstract

AbstractOne of the most fascinating 2D nanomaterials (NMs) ever found is various members of MXene family. Among them, the titanium‐based MXenes, with more than 70% of publication‐related investigations, are comparatively well studied, producing fundamental foundation for the 2D MXene family members with flexible properties, familiar with a variety of advanced novel technological applications. Nonetheless, there are still more candidates among transitional metals (TMs) that can function as MXene NMs in ways that go well beyond those that are now recognized. Systematized details of the preparations, characteristics, limitations, significant discoveries, and uses of the novel M‐based MXenes (M‐MXenes), where M stands for non‐Ti TMs (M = Sc, V, Cr, Y, Zr, Nb, Mo, Hf, Ta, W, and Lu), are given. The exceptional qualities of the 2D non‐Ti MXene outperform standard Ti‐MXene in several applications. There is many advancement in top‐down as well as bottom‐up production of MXenes family members, which allows for exact control of the M‐characteristics MXene NMs to contain cutting‐edge applications. This study offers a systematic evaluation of existing research, covering everything in producing complex M‐MXenes from primary limitations to the characterization and selection of their applications in accordance with their novel features. The development of double metal combinations, extension of additional metal candidates beyond group‐(III–VI)B family, and subsequent development of the 2D TM carbide/TMs nitride/TM carbonitrides to 2D metal boride family are also included in this overview. The possibilities and further recommendations for the way of non‐Ti MXene NMs are in the synthesis of NMs will discuss in detail in this critical evaluation.

Publisher

Wiley

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