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Research Article | Open Access

Bioinspired Microtexturing for Enhanced Sweat Adhesion in Ion-Selective Membranes

Marc Josep Montagut Marques1,Takayuki Masuji2Mohamed Adel3Ahmed M. R. Fath El-Bab4Kayo Hirose5( )Kanji Uchida5Hisashi Sugime6Shinjiro Umezu1,2( )
Department of Integrative Bioscience and Biomedical Engineering, Waseda University, Tokyo, Japan
Department of Modern Mechanical Engineering, Waseda University, Tokyo, Japan
Mechanical Engineering Department, Helwan University, Cairo, Egypt
Department of Mechatronics and Robotics Engineering, EgyptJapan University of Science and Technology (E-JUST), Alexandria, Egypt
Department of Anesthesiology and Pain Relief Center, The University of Tokyo Hospital, Tokyo, Japan
Department of Applied Chemistry, Kindai University, Osaka, Japan

†First author.

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Abstract

Advancements in health wearable technology hold the potential to prevent critical health issues such as hyponatremia and other hydration-related conditions often triggered by intense physical activities. Approaches to address this issue include the development of thin-film wearable sensors incorporating carbon nanotubes (CNTs), which offer scalability, lightweight design, and exceptional electrical properties. CNT paper serves as an ideal substrate for electrochemical sensors like ion-selective membranes (ISMs), enabling effective on-skin electrolyte monitoring. However, current on-skin devices often face limitations in maintaining performance during human motion. This study introduces a bioinspired surface texturing technique that mimics the microstructures of rose petals to enhance wettability, self-cleaning, and ISM sensitivity. By replicating the mechanical properties of the surface texture found on rose petals, the newly developed ISM achieves accurate measurements across a 2-mm air gap, offering an improved interfacing solution that promotes better sweat recirculation and comfort. This advancement overcomes the constraints of traditional sensors, paving the way for more reliable and effective noninvasive health monitoring in real-world conditions.

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Cyborg and Bionic Systems
Article number: 0337

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Cite this article:
Marques MJM, Masuji T, Adel M, et al. Bioinspired Microtexturing for Enhanced Sweat Adhesion in Ion-Selective Membranes. Cyborg and Bionic Systems, 2025, 6: 0337. https://doi.org/10.34133/cbsystems.0337

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Received: 05 March 2025
Revised: 25 May 2025
Accepted: 16 June 2025
Published: 05 August 2025
© 2025 Marc Josep Montagut Marques et al. Exclusive licensee Beijing Institute of Technology Press. No claim to original U.S. Government Works.

Distributed under a Creative Commons Attribution License (CC BY 4.0).