Engineering smart composite hydrogels for wearable disease monitoring

J Li, Q Ding, H Wang, Z Wu, X Gui, C Li, N Hu, K Tao… - Nano-Micro Letters, 2023 - Springer
Growing health awareness triggers the public's concern about health problems. People want
a timely and comprehensive picture of their condition without frequent trips to the hospital for …

Anti-freeze hydrogel-based sensors for intelligent wearable human-machine interaction

Z Fu, H Liu, Q Lyu, J Dai, C Ji, Y Tian - Chemical Engineering Journal, 2024 - Elsevier
As human–machine interaction (HMI) is inseparable from our daily life, it drives people to
pursue a more convenient and intelligent way of life. Most of the traditional HMI devices are …

Sodium alginate reinforced polyacrylamide/xanthan gum double network ionic hydrogels for stress sensing and self-powered wearable device applications

T Li, H Wei, Y Zhang, T Wan, D Cui, S Zhao… - Carbohydrate …, 2023 - Elsevier
Strong and ductile sodium alginate (SA) reinforced polyacrylamide (PAM)/xanthan gum (XG)
double network ionic hydrogels were constructed for stress sensing and self-powered …

Self-healable, adhesive, anti-drying, freezing-tolerant, and transparent conductive organohydrogel as flexible strain sensor, triboelectric nanogenerator, and skin …

L Zhao, Q Ling, X Fan, H Gu - ACS Applied Materials & Interfaces, 2023 - ACS Publications
Conductive hydrogels have attracted tremendous interest in the construction of flexible strain
sensors and triboelectric nanogenerators (TENGs) owing to their good stretchability and …

Collagen-based organohydrogel strain sensor with self-healing and adhesive properties for detecting human motion

Q Ling, X Fan, M Ling, J Liu, L Zhao… - ACS Applied Materials & …, 2023 - ACS Publications
Conductive hydrogels are ideal for flexible sensors, but it is still a challenge to produce such
hydrogels with combined toughness, self-adhesion, self-healing, anti-freezing, moisturizing …

Ultra-stable and self-healing coordinated collagen-based multifunctional double-network organohydrogel e-skin for multimodal sensing monitoring of strain-resistance …

B Song, X Fan, J Shen, H Gu - Chemical Engineering Journal, 2023 - Elsevier
Conductive hydrogels are considered as an ideal candidate for next-generation electronic
skin due to their excellent softness and conductivity. In particular, the collagen-based …

Rapid self-healing, self-adhesive, anti-freezing, moisturizing, antibacterial and multi-stimuli-responsive PVA/starch/tea polyphenol-based composite conductive …

T Ke, L Zhao, X Fan, H Gu - Journal of Materials Science & Technology, 2023 - Elsevier
The complexity of application environment stimulates the development of wearable devices
based on functional hydrogels. Among all the promising performances, self-healing and self …

Multifunctional, ultra‐tough organohydrogel E‐skin reinforced by hierarchical goatskin fibers skeleton for energy harvesting and self‐powered monitoring

X Fan, T Ke, H Gu - Advanced Functional Materials, 2023 - Wiley Online Library
E‐skins based on conductive hydrogels are regarded as ideal candidates for sensing
application. However, limited by the constructed materials and strategies, the current …

Tara tannin-cross-linked, underwater-adhesive, super self-healing, and recyclable gelatin-based conductive hydrogel as a strain sensor

Z He, J Liu, X Fan, B Song, H Gu - Industrial & Engineering …, 2022 - ACS Publications
Conductive hydrogel strain sensors have triggered extensive research interest in artificial
intelligence, human motion detection, electronic skin, and other technical fields. However, it …

Polydopamine-reinforced hemicellulose-based multifunctional flexible hydrogels for human movement sensing and self-powered transdermal drug delivery

Y Li, M Yao, Y Luo, J Li, Z Wang, C Liang… - … Applied Materials & …, 2023 - ACS Publications
The preparation of bio-based hydrogels with excellent mechanical properties, stable
electrochemical properties, and self-adhesive properties remains a challenge. In this study …