Porous conductive textiles for wearable electronics

Y Ding, J Jiang, Y Wu, Y Zhang, J Zhou… - Chemical …, 2024 - ACS Publications
Over the years, researchers have made significant strides in the development of novel
flexible/stretchable and conductive materials, enabling the creation of cutting-edge …

A review of nanomaterials for biosensing applications

L Li, T Wang, Y Zhong, R Li, W Deng, X **ao… - Journal of Materials …, 2024 - pubs.rsc.org
A biosensor is a device that reacts with the analyte to be analyzed, detects its concentration,
and generates readable information, which plays an important role in medical diagnosis …

High-performance and long-term stability of MXene/PEDOT: PSS-decorated cotton yarn for wearable electronics applications

G He, F Ning, X Liu, Y Meng, Z Lei, X Ma, M Tian… - Advanced Fiber …, 2024 - Springer
High-performance wearable electronics are highly desirable for the development of body
warming and human health monitoring devices. In the present study, high electrically …

Fabrication techniques and sensing mechanisms of textile-based strain sensors: from spatial 1D and 2D perspectives

S Liu, W Zhang, J He, Y Lu, Q Wu, M **ng - Advanced Fiber Materials, 2024 - Springer
The intelligent textile sensors based on fiber (1D) and fabric (2D) are the ideal candidates
for wearable devices. Their flexible weaving and unique structure endow them with …

Cellulosic Nonwovens Incorporated with Fully Utilized MXene Precursor as Smart Pressure Sensor and Multi‐Protection Materials

Z Yu, C Deng, J Sun, X Zhang, Y Liu… - Advanced Functional …, 2024 - Wiley Online Library
Currently, multifunctional MXene‐integrated wearable textiles (MWTs) are particularly
appealing due to their various applications such as health monitoring, smart protection, and …

Mass‐producible 3D hair structure‐editable silk‐based electronic skin for multiscenario signal monitoring and emergency alarming system

D Ge, Q Mi, R Gong, S Li, C Qin, Y Dong… - Advanced Functional …, 2023 - Wiley Online Library
Structurally tunable electronic skin (e‐skin) is beneficial for advancing wearable electronics,
prosthetics, and human‐machine interaction (HMI). However, the regulation of e‐skin by …

Low-cost, scalable fabrication of all-fabric piezoresistive sensors via binder-free, in-situ welding of carbon nanotubes on bicomponent nonwovens

G Tian, Y Shi, J Deng, W Yu, L Yang, Y Lu… - Advanced Fiber …, 2024 - Springer
Wearable piezoresistive sensors have shown enormous application prospects in flexible
electronics and human–machine interfaces. However, current piezoresistive sensors suffer …

Highly sensitive fiber pressure sensors over a wide pressure range enabled by resistive-capacitive hybrid response

X Qu, J Li, Z Han, Q Liang, Z Zhou, R **e, H Wang… - ACS …, 2023 - ACS Publications
Soft capacitive pressure sensors with high performance are becoming increasingly in
demand in the emerging flexible wearable field. While capacitive fiber pressure sensors …

Nanocellulose based hydrogel for flexible sensors: Current progress and future perspective

Z Wang, M Zhu, J Li, C Hu, J Li, R **ong, C Huang - Nano Energy, 2024 - Elsevier
Hydrogels have found significant applications in flexible sensing due to their tunable
modulus and excellent conformability to human skin. However, petroleum-based hydrogels …

Dual-mode fiber strain sensor based on mechanochromic photonic crystal and transparent conductive elastomer for human motion detection

R Zhao, Y He, Y He, Z Li, M Chen, N Zhou… - … Applied Materials & …, 2023 - ACS Publications
As an important component of wearable and stretchable strain sensors, dual-mode strain
sensors can respond to deformation via optical/electrical dual-signal changes, which have …