[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 …

Bioinspired supramolecular hydrogel from design to applications

F Gao, X Yang, W Song - Small Methods, 2024 - Wiley Online Library
Nature offers a wealth of opportunities to solve scientific and technological issues based on
its unique structures and function. The dynamic non‐covalent interaction is considered to be …

Amphibious polymer materials with high strength and superb toughness in various aquatic and atmospheric environments

H Wan, B Wu, L Hou, P Wu - Advanced Materials, 2024 - Wiley Online Library
Herein, the fabrication of amphibious polymer materials with outstanding mechanical
performances, both underwater and in the air is reported. A polyvinyl alcohol/poly (2 …

A Biomimetic “Salting Out—Alignment—Locking” Tactic to Design Strong and Tough Hydrogel

X Sun, Y Mao, Z Yu, P Yang, F Jiang - Advanced Materials, 2024 - Wiley Online Library
Recently, hydrogel‐based soft materials have demonstrated huge potential in soft robotics,
flexible electronics as well as artificial skins. Although various methods are developed to …

Reinforcing hydrogel by nonsolvent‐quenching‐facilitated in situ nanofibrosis

X Yang, L Xu, C Wang, J Wu, B Zhu… - Advanced …, 2023 - Wiley Online Library
Nanofibrous hydrogels are pervasive in load‐bearing soft tissues, which are believed to be
key to their extraordinary mechanical properties. Enlighted by this phenomenon, a novel …

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 magnetic hydrogels with photoweldability made by stepwise assembly of magnetic-nanoparticle-integrated aramid nanofiber composites

Z Wang, H Zhu, H Li, Z Wang, M Sun, B Yang… - ACS …, 2023 - ACS Publications
Hydrogels capable of transforming in response to a magnetic field hold great promise for
applications in soft actuators and biomedical robots. However, achieving high mechanical …

[HTML][HTML] Aramid nanofiber-based functional composite materials: preparations, applications and perspectives

H Zhang, M Zhang, J Li, B Yang, SC Abbas… - Composites Part B …, 2023 - Elsevier
Abstract Aramid Nanofibers (ANFs), akin to PPTA Poly (p-phenylene terephthalamide),
stand at the forefront of cutting-edge nanomaterials, boasting exceptional properties like …

Anti‐Swelling, High‐Strength, Anisotropic Conductive Hydrogel with Excellent Biocompatibility for Implantable Electronic Tendon

N Li, Q Yu, S Duan, Y Du, X Shi, X Li… - Advanced Functional …, 2024 - Wiley Online Library
As hydrogels rapidly advance for diverse technologies, their practical applications as
implantable artificial tendon becomes promising, yet challenging. It requires similar …

Triple‐Mechanism Enhanced Flexible SiO2 Nanofiber Composite Hydrogel with High Stiffness and Toughness for Cartilaginous Ligaments

Y Ma, J Gong, Q Li, X Liu, C Qiao, J Zhang, S Zhang… - Small, 2024 - Wiley Online Library
Hydrogels are widely used in tissue engineering, soft robotics and wearable electronics.
However, it is difficult to achieve both the required toughness and stiffness, which severely …