Recent Progress in Emerging Novel MXenes Based Materials and their Fascinating Sensing Applications

Author:

Khan Karim123ORCID,Tareen Ayesha Khan4,Iqbal Muhammad5,Ye Zhang6,Xie Zhongjian7,Mahmood Asif8,Mahmood Nasir9,Zhang Han3

Affiliation:

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

2. Shenzhen Nuoan Environmental & Safety Inc. Shenzhen 518107 P. R. China

3. 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

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

5. Department of BioChemistry Quaid‐i‐Azam University Islamabad 45320 Islamic Republic of Pakistan

6. School of Chemistry and Chemical Engineering University of South China Hengyang Hunan 421001 China

7. Shenzhen International Institute for Biomedical Research Shenzhen Guangdong 518116 China

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

9. School of Science The Royal Melbourne Institute of Technology University Melbourne Victoria VIC 3001 Australia

Abstract

AbstractEarly transition metals based 2D carbides, nitrides and carbonitrides nanomaterials are known as MXenes, a novel and extensive new class of 2D materials family. Since the first accidently synthesis based discovery of Ti3C2in 2011, more than 50 additional compositions have been experimentally reported, including at least eight distinct synthesis methods and also more than 100 stoichiometries are theoretically studied. Due to its distinctive surface chemistry, graphene like shape, metallic conductivity, high hydrophilicity, outstanding mechanical and thermal properties, redox capacity and affordable with mass‐produced nature, this diverse MXenes are of tremendous scientific and technological significance. In this review, first we'll come across the MXene based nanomaterials possible synthesis methods, their advantages, limitations and future suggestions, new chemistry related to their selected properties and potential sensing applications, which will help us to explain why this family is growing very fast as compared to other 2D families. Secondly, problems that help to further improve commercialization of the MXene nanomaterials based sensors are examined, and many advances in the commercializing of the MXene nanomaterials based sensors are proposed. At the end, we'll go through the current challenges, limitations and future suggestions.

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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