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 …

End-to-end design of wearable sensors

HC Ates, PQ Nguyen, L Gonzalez-Macia… - Nature Reviews …, 2022 - nature.com
Wearable devices provide an alternative pathway to clinical diagnostics by exploiting
various physical, chemical and biological sensors to mine physiological (biophysical and/or …

Self‐healing hydrogel bioelectronics

Z Li, J Lu, T Ji, Y Xue, L Zhao, K Zhao, B Jia… - Advanced …, 2024 - Wiley Online Library
Hydrogels have emerged as powerful building blocks to develop various soft bioelectronics
because of their tissue‐like mechanical properties, superior bio‐compatibility, the ability to …

Water‐resistant conductive gels toward underwater wearable sensing

J Wei, P ** vigorously as superior wearable sensing materials due to
their intrinsic conductivity, softness, stretchability, and biocompatibility, showing a great …

Triboelectric nanogenerators based on hydrated lithium ions incorporated double-network hydrogels for biomechanical sensing and energy harvesting at low …

H Zhang, Q Yang, L Xu, N Li, H Tan, J Du, M Yu, J Xu - Nano Energy, 2024 - Elsevier
Conductive hydrogels with flexibility, anti-freezing ability and functionality have garnered
significant attention in develo** of advanced triboelectric nanogenerators (TENGs) …

Ultrastretchable ionogel with extreme environmental resilience through controlled hydration interactions

Y Ye, H Oguzlu, J Zhu, P Zhu, P Yang… - Advanced Functional …, 2023 - Wiley Online Library
Ionic conductive gels are widely sought after for applications that require reliable ionic
conduction and mechanical performance under extreme conditions, which remains a grand …

Water-modulated biomimetic hyper-attribute-gel electronic skin for robotics and skin-attachable wearables

S Duan, Q Shi, J Hong, D Zhu, Y Lin, Y Li, W Lei… - ACS …, 2023 - ACS Publications
Electronic skin (e-skin), mimicking the physical–chemical and sensory properties of human
skin, is promising to be applied as robotic skins and skin-attachable wearables with …

Conductive hydrogels for bioenergy harvesting and self-powered application

C Zhang, MOG Nayeem, Z Wang, X Pu… - Progress in Materials …, 2023 - Elsevier
Conductive hydrogels (CHs) are characterized by tissue-like mechanical properties, multiple
stimuli-responsive abilities and favourable biocompatibility, enabling their wearable devices …

Stimuli-bioresponsive hydrogels as new generation materials for implantable, wearable, and disposable biosensors for medical diagnostics: Principles, opportunities …

A Barhoum, O Sadak, IA Ramirez, N Iverson - Advances in Colloid and …, 2023 - Elsevier
Hydrogels are excellent water-swollen polymeric materials for use in wearable, implantable,
and disposable biosensors. Hydrogels have unique properties such as low cost, ease of …

[HTML][HTML] Recent progress of bio-based smart wearable sensors for healthcare applications

SN Banitaba, S Khademolqorani, VV Jadhav… - Materials Today …, 2023 - Elsevier
As personal portable devices, wearable sensors supply a leading-edge pathway to
diagnose various diseases through actuating biological, physical, and chemical sensing …