Affiliation:
1. Department of Oral Biology The Goldschleger School of Dental Medicine Faculty of Medical and Health Sciences Tel Aviv University Tel Aviv 6997801 Israel
2. The Center for Nanoscience and Nanotechnology Tel Aviv University Tel Aviv 6997801 Israel
3. Department of Materials Science and Engineering Tel Aviv University Tel Aviv 6997801 Israel
4. School of Mechanical Engineering Afeka Tel Aviv Academic College of Engineering Tel Aviv 6910717 Israel
5. The Scojen Institute for Synthetic Biology Director Reichman University 8 University St. Herzliya 4610101 Israel
Abstract
AbstractWearable pressure sensors have become increasingly popular for personal healthcare and motion detection applications due to recent advances in materials science and functional nanomaterials. In this study, a novel composite hydrogel is presented as a sensitive piezoresistive sensor that can be utilized for various biomedical applications, such as wearable skin patches and integrated artificial skin that can measure pulse and blood pressure, as well as monitor sound as a self‐powered microphone. The hydrogel is composed of self‐assembled short peptides containing aromatic, positively‐ or negatively charged amino acids combined with 2D Ti3C2Tz MXene nanosheets. This material is low‐cost, facile, reliable, and scalable for large areas while maintaining high sensitivity, a wide detection range, durability, oxidation stability, and biocompatibility. The bioinspired nanostructure, strong mechanical stability, and ease of functionalization make the assembled peptide‐based composite MXene‐hydrogel a promising and widely applicable material for use in bio‐related wearable electronics.
Funder
European Research Council
Israel Science Foundation
Colton Foundation
HORIZON EUROPE European Research Council
Cited by
2 articles.
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