Wearable and stretchable strain sensors: materials, sensing mechanisms, and applications

H Souri, H Banerjee, A Jusufi, N Radacsi… - Advanced Intelligent …, 2020 - Wiley Online Library
Recent advances in the design and implementation of wearable resistive, capacitive, and
optical strain sensors are summarized herein. Wearable and stretchable strain sensors have …

Surface wrinkling for flexible and stretchable sensors

G Lee, M Zarei, Q Wei, Y Zhu, SG Lee - Small, 2022 - Wiley Online Library
Recent advances in nanolithography, miniaturization, and material science, along with
developments in wearable electronics, are pushing the frontiers of sensor technology into …

Functionalized fiber-based strain sensors: pathway to next-generation wearable electronics

Z Liu, T Zhu, J Wang, Z Zheng, Y Li, J Li, Y Lai - Nano-Micro Letters, 2022 - Springer
Wearable strain sensors are arousing increasing research interests in recent years on
account of their potentials in motion detection, personal and public healthcare, future …

Artificial skin perception

M Wang, Y Luo, T Wang, C Wan, L Pan… - Advanced …, 2021 - Wiley Online Library
Skin is the largest organ, with the functionalities of protection, regulation, and sensation. The
emulation of human skin via flexible and stretchable electronics gives rise to electronic skin …

Bioinspired multifunctional photonic‐electronic smart skin for ultrasensitive health monitoring, for visual and self‐powered sensing

Y Zhao, W Gao, K Dai, S Wang, Z Yuan, J Li… - Advanced …, 2021 - Wiley Online Library
Smart skin is highly desired to be ultrasensitive and self‐powered as the medium of artificial
intelligence. Here, an ultrasensitive self‐powered mechanoluminescence smart skin …

Flexible strain sensors for wearable applications fabricated using novel functional nanocomposites: A review

MAU Khalid, SH Chang - Composite Structures, 2022 - Elsevier
With recent advancements in novel composite nanomaterials and microstructures, wearable
electronic devices, particularly flexible and stretchable strain sensors, are receiving …

Mechanically flexible conductors for stretchable and wearable e‐skin and e‐textile devices

B Wang, A Facchetti - Advanced Materials, 2019 - Wiley Online Library
Considerable progress in materials development and device integration for mechanically
bendable and stretchable optoelectronics will broaden the application of “Internet‐of …

A stretchable, self-healing conductive hydrogels based on nanocellulose supported graphene towards wearable monitoring of human motion

C Zheng, K Lu, Y Lu, S Zhu, Y Yue, X Xu, C Mei… - Carbohydrate …, 2020 - Elsevier
Stretchable, self-healing and conductive hydrogels have attracted much attention for
wearable strain sensors, which are highly required in health monitoring, human-machine …

Mussel-inspired cellulose nanocomposite tough hydrogels with synergistic self-healing, adhesive, and strain-sensitive properties

C Shao, M Wang, L Meng, H Chang, B Wang… - Chemistry of …, 2018 - ACS Publications
The remarkable progress in efforts to prepare conductive self-healing hydrogels mimicking
human skin's functions has been witnessed in recent years. However, it remains a great …

Graphene-enabled wearable sensors for healthcare monitoring

H Zhang, R He, Y Niu, F Han, J Li, X Zhang… - Biosensors and …, 2022 - Elsevier
Wearable sensors in healthcare monitoring have recently found widespread applications in
biomedical fields for their non-or minimal-invasive, user-friendly and easy-accessible …