MXene’s, a rapidly emerging class of two-dimensional (2D) transition metal carbides, nitrides, and carbonitrides, exhibit exceptional electrical conductivity, tunable surface chemistry, and large surface area, making them highly attractive for wearable sensing technologies. Advances in structural design, composite engineering, and surface modification have enabled MXene-based wearable sensors with superior sensitivity, mechanical robustness, rapid response, and multifunctional sensing capabilities. Recent progress encompasses diverse device types, including strain, pressure, biochemical, and multifunctional sensors, supported by electrochemical, piezoresistive, triboelectric, and capacitive mechanisms. In addition, efforts toward biocompatible MXene hybrids, self-healing hydrogels, and multifunctional architectures are highlighted. Key challenges such as durability, recyclability, and environmental impact are critically examined. This review provides a comprehensive overview of synthesis strategies, device design, and functional enhancements, while emphasizing the future potential of MXene’s in smart textiles, bioelectronics, and human–machine interfaces. The insights presented aim to accelerate innovation and guide the development of next-generation wearable technologies based on MXene’s.
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29 June 2026
Research Article|
June 18 2026
Recent advances in MXene based wearable sensors: a mini review
Md. Zahid Hasan;
Md. Zahid Hasan
Department of Apparel Merchandising and Management,
BGMEA University of Fashion and Technology
, People’s Republic of Bangladesh
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Mohasena;
Mohasena
Department of Nutrition, Biochemistry and Food Science,
National Institute of Preventive and Social Medicine
, Dhaka, People’s Republic of Bangladesh
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Merve Ünal;
Merve Ünal
Department of Polymer Materials, Graduate School of Natural and Applied Sciences,
Bursa Uludağ University
, Bursa, Turkey
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Sakil Mahmud;
Sakil Mahmud
Ivory V. Nelson Center for the Sciences, Department of Chemistry and Physics,
Lincoln University
, Philadelphia, Pennsylvania, USA
; Department of Textile Engineering, Faculty of Engineering, Daffodil International University, Dhaka, People’s Republic of Bangladesh
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K.Z.M. Abdul Motaleb;
Department of Engineering, Faculty of Marine Technologies and Natural Sciences,
Klaipeda University
, Klaipeda, Lithuania
Corresponding author K.Z.M. Abdul Motaleb (kzm.abdul.motaleb@gmail.com)
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Farhana Jannat;
Farhana Jannat
Department of Apparel Merchandising and Management,
BGMEA University of Fashion and Technology
, People’s Republic of Bangladesh
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Ayub Nabi Khan;
Ayub Nabi Khan
BGMEA University of Fashion and Technology
, People’s Republic of Bangladesh
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Murat Yazici
Murat Yazici
Engineering Faculty, Automotive Engineering Department
, Bursa Uludağ University
, Bursa, Turkey
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Corresponding author K.Z.M. Abdul Motaleb (kzm.abdul.motaleb@gmail.com)
Publisher: Emerald Publishing
Received:
September 03 2025
Accepted:
April 30 2026
Online ISSN: 2050-6260
Print ISSN: 2050-6252
Funding
Funding Group:
- Funding Statement(s): This research did not receive any specific grant from funding agencies in the public, commercial, or non-profit sectors.
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Surface Innovations (2026) 14 (4): 194–211.
Article history
Received:
September 03 2025
Accepted:
April 30 2026
Citation
Hasan MZ, Mohasena, Ünal M, Mahmud S, Motaleb KA, Jannat F, Khan AN, Yazici M (2026), "Recent advances in MXene based wearable sensors: a mini review". Surface Innovations, Vol. 14 No. 4 pp. 194–211, doi: https://doi.org/10.1680/jsuin.25.00080
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