Multifunctional wearable strain/pressure sensor based on conductive carbon nanotubes/silk nonwoven fabric with high durability and low detection limit

Y He, M Zhou, MHH Mahmoud, X Lu, G He… - … Composites and Hybrid …, 2022 - Springer
With the rapid development of flexible wearable strain sensor systems, electronic textiles
with comfort and controllable strain/pressure-sensing capabilities have attracted great …

[HTML][HTML] Highly stretchable, sensitive and wide linear responsive fabric-based strain sensors with a self-segregated carbon nanotube (CNT)/Polydimethylsiloxane …

L Liu, X Zhang, D Xiang, Y Wu, D Sun, J Shen… - Progress in Natural …, 2022 - Elsevier
Flexible strain sensors have received increasing attention with the development of wearable
electronic devices. However, integrating wide strain detection range, high sensitivity while …

Breathable and wearable strain sensors based on synergistic conductive carbon nanotubes/cotton fabrics for multi-directional motion detection

X Zhang, L Ke, X Zhang, F Xu, Y Hu… - ACS Applied Materials …, 2022 - ACS Publications
Flexible strain-sensitive sensors have been receiving intensive attention in many aspects
ranging from human motion capture to health-related signal monitoring. However, the fabric …

Stretchable conductive nonwoven fabrics with self-cleaning capability for tunable wearable strain sensor

H Liu, Q Li, Y Bu, N Zhang, C Wang, C Pan, L Mi, Z Guo… - Nano Energy, 2019 - Elsevier
With the fast growth of wearable intelligent devices, tunable strain sensors with broad strain
sensing range and high sensitivity are in urgent demand. Furthermore, the merits of …

A highly stretchable strain sensor based on electrospun carbon nanofibers for human motion monitoring

Y Ding, J Yang, CR Tolle, Z Zhu - RSC advances, 2016 - pubs.rsc.org
Highly stretchable and sensitive strain sensors are in great demand for human motion
monitoring. This work reports a strain sensor based on electrospun carbon nanofibers …

Highly sensitive and stretchable fiber strain sensors empowered by synergetic conductive network of silver nanoparticles and carbon nanotubes

B Niu, S Yang, X Tian, T Hua - Applied Materials Today, 2021 - Elsevier
Nowadays the demand for flexible strain sensors is booming for human-centered wearable
applications, yet it is still challenging to achieve a high sensitivity at large stretchability of …

Weavable and stretchable piezoresistive carbon nanotubes-embedded nanofiber sensing yarns for highly sensitive and multimodal wearable textile sensor

K Qi, Y Zhou, K Ou, Y Dai, X You, H Wang, J He, X Qin… - Carbon, 2020 - Elsevier
Developing multimodal wearable textile sensors to simulate the complex human skin
characteristics is central for healthcare, electronic skins, artificial intelligence and biomedical …

[HTML][HTML] Flexible strain sensor based on aerogel-spun carbon nanotube yarn with a core-sheath structure

W Li, F Xu, W Liu, Y Gao, K Zhang, X Zhang… - Composites Part A …, 2018 - Elsevier
Flexible strain sensors with good linear sensitivity, mechanical compatibility with systems
and robustness over repeated usages are very desirable in wearable electronics, smart …

[HTML][HTML] Highly sensitive and durable wearable strain sensors from a core-sheath nanocomposite yarn

J Pan, B Hao, W Song, S Chen, D Li, L Luo… - Composites Part B …, 2020 - Elsevier
With fiber-based wearable electronics being developed and widely used in various fields,
the safety and durability of nanomaterials in fibrous system become big concerns due to the …

A stretchable, highly sensitive, and multimodal mechanical fabric sensor based on electrospun conductive nanofiber yarn for wearable electronics

N Nan, J He, X You, X Sun, Y Zhou, K Qi… - Advanced Materials …, 2019 - Wiley Online Library
The development of highly sensitive, stretchable, and wearable electronic skin with
multimodal mechanical‐sensing performance is of great research value for applications in …