Transparent electronics for wearable electronics application

D Won, J Bang, SH Choi, KR Pyun, S Jeong… - Chemical …, 2023 - ACS Publications
Recent advancements in wearable electronics offer seamless integration with the human
body for extracting various biophysical and biochemical information for real-time health …

Surface wettability for skin‐interfaced sensors and devices

X Wang, Y Liu, H Cheng… - Advanced functional …, 2022 - Wiley Online Library
The practical applications of skin‐interfaced sensors and devices in daily life hinge on the
rational design of surface wettability to maintain device integrity and achieve improved …

Robust self-healing graphene oxide-based superhydrophobic coatings for efficient corrosion protection of magnesium alloys

B Li, S Xue, P Mu, J Li - ACS Applied Materials & Interfaces, 2022 - ACS Publications
A self-healing coating possesses a broad application prospect in the metal corrosion
protection area due to its pleasurable performance. By far, despite a great deal of research …

Superhydrophobic conductive rubber band with synergistic dual conductive layer for wide-range sensitive strain sensor

H Sun, Y Bu, H Liu, J Wang, W Yang, Q Li, Z Guo, C Liu… - Science Bulletin, 2022 - Elsevier
Wearable electronic devices have received increasing interests because of their excellent
flexibility, stretchability, and human friendliness. As the core components, flexible strain …

Self-Healing, Wet-Adhesion silk fibroin conductive hydrogel as a wearable strain sensor for underwater applications

H Zheng, M Chen, Y Sun, B Zuo - Chemical Engineering Journal, 2022 - Elsevier
Wearable strain sensors based on conductive hydrogels have attracted much attention due
to their great application potential in fields such as human motion and health monitoring …

Highly sensitive strain sensor and self-powered triboelectric nanogenerator using a fully physical crosslinked double-network conductive hydrogel

Y Luo, M Yu, Y Zhang, Y Wang, L Long, H Tan, N Li… - Nano Energy, 2022 - Elsevier
Stretchable and conductive hydrogels have broad application prospects in various portable
and wireless electronic devices and sensors. However, most hydrogels used to construct …

Highly durable and fast response fabric strain sensor for movement monitoring under extreme conditions

D Lu, S Liao, Y Chu, Y Cai, Q Wei, K Chen… - Advanced Fiber …, 2023 - Springer
The exploration of smart electronic textiles is a common goal to improve people's quality of
life. However, current smart e-textiles still face challenges such as being prone to failure …

High‐Performance Strain Sensors Based on Organohydrogel Microsphere Film for Wearable Human–Computer Interfacing

K Zhai, H Wang, Q Ding, Z Wu, M Ding, K Tao… - Advanced …, 2023 - Wiley Online Library
Stretchable hydrogel‐based strain sensors suffer from limited sensitivity, which urgently
requires further breakthroughs for precise and stable human‐computer interaction. Here, an …

A breathable knitted fabric-based smart system with enhanced superhydrophobicity for drowning alarming

T Zhu, Y Ni, K Zhao, J Huang, Y Cheng, M Ge, C Park… - ACS …, 2022 - ACS Publications
Wearable strain sensors have aroused increasing interest in human motion monitoring,
even for the detection of small physiological signals such as joint movement and pulse …

Ultra-stretchable and superhydrophobic textile-based bioelectrodes for robust self-cleaning and personal health monitoring

J Dong, D Wang, Y Peng, C Zhang, F Lai, G He, P Ma… - Nano Energy, 2022 - Elsevier
The rapid advancement of smart electronics has stimulated immense research interest in
non-metallic bioelectrodes with scalable yet cost-effective fabrication, harsh-environment …