[HTML][HTML] Flexible electronics for cardiovascular healthcare monitoring

T Zhang, N Liu, J Xu, Z Liu, Y Zhou, Y Yang, S Li… - The …, 2023 - ncbi.nlm.nih.gov
Cardiovascular diseases (CVDs) are one of the most urgent threats to humans worldwide,
which are responsible for almost one-third of global mortality. Over the last decade, research …

An overview of conductive composite hydrogels for flexible electronic devices

J Chen, F Liu, T Abdiryim, X Liu - Advanced Composites and Hybrid …, 2024 - Springer
Conductive hydrogels (CHs) have shown great potential in smart wearable devices and
energy storage due to their unique advantages, such as the mechanical properties and …

Gesture recognition system using reduced graphene oxide-enhanced hydrogel strain sensors for rehabilitation training

W Li, S Wu, S Li, X Zhong, X Zhang… - … Applied Materials & …, 2023 - ACS Publications
Gesture recognition systems epitomize a modern and intelligent approach to rehabilitative
training, finding utility in assisted driving, sign language comprehension, and machine …

Thermochromic-based bimodal sensor for strain-insensitive temperature sensing and synchronous strain sensing

F Xie, F Lu, Y Tian, X Zhang, Y Wang, L Zheng… - Chemical Engineering …, 2023 - Elsevier
High-sensitivity flexible sensors have broad applications, but their cross-sensitivity to
temperature variations and deformations often results in unwanted signal interference …

Ion Clusters‐Driven Strong and Acid/Alkali/Freezing‐Tolerant Conductive Hydrogels for Flexible Sensors in Extreme Environments

Y Lyu, R Guo, Z Lin, F Zhai, T Wu… - Advanced Functional …, 2023 - Wiley Online Library
Supramolecular polymer hydrogels, exhibiting wide applications in flexible sensing,
wearable electronics, artificial skin, etc., often require complex molecule and component …

A Laminated Gravity‐Driven Liquid Metal‐Doped Hydrogel of Unparalleled Toughness and Conductivity

Q Zhang, H Lu, G Yun, L Gong, Z Chen… - Advanced Functional …, 2023 - Wiley Online Library
Conductive hydrogels have been promising candidates for wearable and flexible electronics
due to their high flexibility and biocompatibility. However, the previously reported hydrogels …

A Freeze‐Resistant, Highly Stretchable and Biocompatible Organohydrogel for Non‐Delayed Wearable Sensing at Ultralow‐Temperatures

X Huang, Z Zheng, H Wang, W Xu, M Wu… - Advanced Functional …, 2024 - Wiley Online Library
Wearable electronics based on conductive hydrogels (CHs) easily suffer from prolonged
response times, reduced wearing comfort, shortened service lives, and impaired signal …

Water vapor assisted aramid nanofiber reinforcement for strong, tough and ionically conductive organohydrogels as high-performance strain sensors

Y Wu, Y Zhang, Z Liao, J Wen, H Zhang, H Wu… - Materials …, 2024 - pubs.rsc.org
Conductive organohydrogels have gained increasing attention in wearable sensors, flexible
batteries, and soft robots due to their exceptional environment adaptability and controllable …

High-strength, freeze-resistant, recyclable, and biodegradable polyvinyl alcohol/glycol/wheat protein complex organohydrogel for wearable sensing devices

Z Li, P Liu, S Chen, S Liu, Y Yu, W Pan, T Li… - …, 2023 - ACS Publications
The application of flexible wearable sensing devices based on conductive hydrogels in
human motion signal monitoring has been widely studied. However, conventional …

Advancing high-performance tailored dual-crosslinking network organo-hydrogel flexible device for wireless wearable sensing

Y Zheng, J Wang, T Cui, J Zhu, Z Gui - Journal of Colloid and Interface …, 2024 - Elsevier
Conductive hydrogels are essential for enabling long-term and reliable signal sensing in
wearable electronics due to their tunable flexibility, stimulus responsiveness, and …