Progress, Prospects and Challenges of MXene Integrated Optoelectronics Devices

Author:

Hossaın Md. Tanvir12,Repon Md. Reazuddin345ORCID,Shahid Md. Abdus2,Ali Ayub2,Islam Tarikul678

Affiliation:

1. Department of Textile Engineering Bangladesh University of Business and Technology (BUBT) Dhaka 1216 Bangladesh

2. Department of Textile Engineering Dhaka University of Engineering and Technology Gazipur 1707 Bangladesh

3. Department of Textile Engineering Daffodil International University Dhaka 1216 Bangladesh

4. Laboratory of Plant Physiology Nature Research Centre Akademijos g. 2 08412 Vilnius Lithuania

5. Department of Production Engineering Faculty of Mechanical Engineering and Design Kaunas University of Technology Studentų 56 LT-51424 Kaunas Lithuania

6. Department of Textile Engineering Jashore University of Science and Technology Jashore 7408 Bangladesh

7. ZR Research Institute for Advanced Materials Sherpur 2100 Bangladesh

8. Department of Textiles Merchandising and Interiors University of Georgia Athens GA 30602 USA

Abstract

AbstractRecently, the emerging 2D materials MXene have gained a surge of attention to the production of optoelectronics devices such as solar cells, plasmonic, phototransistors, photodetectors, light‐emitting diodes, photothermal therapy, and so on. Its outstanding optical and electrical characteristics, unique structure, and large specific surface area make it suitable for future use in modern optoelectronics including ultrafast lasers, light emitters, modulators, and plasmonic generators. There is a lack of critical analysis on the prospects, challenges, overview of synthesis methods, mechanisms, and future research directions of MXene despite having some reviews have been published on the applications of MXene. Therefore, this study critically analyzed the existing challenges of MXene, such as poor stability in an oxygen environment, inadequate mechanical properties, ease of stacking, temperature barrier, and so on. In addition, the fundamentals, preparation techniques, properties, and applications of MXene have been summarized. The mechanism, limitations, and benefits of different preparation methods have been mentioned. A comprehensive analysis and guidelines have been provided to improve the existing synthesis methods. The ways to overcome these challenges, prospects, and future markets of the MXene‐based optoelectronic devices have been described.

Publisher

Wiley

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