Skin-interfaced wearable sweat sensors for precision medicine

J Min, J Tu, C Xu, H Lukas, S Shin, Y Yang… - Chemical …, 2023 - ACS Publications
Wearable sensors hold great potential in empowering personalized health monitoring,
predictive analytics, and timely intervention toward personalized healthcare. Advances in …

Power generation for wearable systems

M Gao, P Wang, L Jiang, B Wang, Y Yao… - Energy & …, 2021 - pubs.rsc.org
Wearable devices are drawing increasing attention in both academia and industry in that
they can offer unprecedented information related to human health in real-time and human …

Self-powered and self-sensing devices based on human motion

Z Lai, J Xu, CR Bowen, S Zhou - Joule, 2022 - cell.com
The emergence of human-motion-based energy harvesters is a reflection of the need to
develop future energy supplies for small-scale human-motion-based self-powered and self …

High-performance triboelectric nanogenerator based on MXene functionalized polyvinylidene fluoride composite nanofibers

T Bhatta, P Maharjan, H Cho, C Park, SH Yoon… - Nano Energy, 2021 - Elsevier
In this work, electrospun MXene (Ti 3 C 2 T x) functionalized Polyvinylidene fluoride (PVDF)
composite nanofiber is firstly proposed as a promising negative triboelectric layer for …

A flexible ultra-sensitive triboelectric tactile sensor of wrinkled PDMS/MXene composite films for E-skin

YW Cai, XN Zhang, GG Wang, GZ Li, DQ Zhao, N Sun… - Nano Energy, 2021 - Elsevier
Electronic skin (E-skin) based on tactile sensors plays an important role in monitoring daily
health status and artificial intelligence (AI). High sensitivity and flexibility are highly …

A low-frequency rotational electromagnetic energy harvester using a magnetic plucking mechanism

G Miao, S Fang, S Wang, S Zhou - Applied Energy, 2022 - Elsevier
Energy harvesting from rotational motion, such as vehicle tires and rotational devices,
remains a challenge because of the difficulty of balancing the harvesting frequency range …

Artificial intelligence-enabled caregiving walking stick powered by ultra-low-frequency human motion

X Guo, T He, Z Zhang, A Luo, F Wang, EJ Ng, Y Zhu… - ACS …, 2021 - ACS Publications
The increasing population of the elderly and motion-impaired people brings a huge
challenge to our social system. However, the walking stick as their essential tool has rarely …

[HTML][HTML] Recent progress in energy harvesting systems for wearable technology

A Ali, H Shaukat, S Bibi, WA Altabey, M Noori… - Energy Strategy …, 2023 - Elsevier
This paper provides a comprehensive review of the recent progress made in energy
harvesting systems for wearable technology. An energy-harvesting system would be a …

Siloxene/PVDF composite nanofibrous membrane for high‐performance triboelectric nanogenerator and self‐powered static and dynamic pressure sensing …

T Bhatta, S Sharma, K Shrestha, Y Shin… - Advanced Functional …, 2022 - Wiley Online Library
Polymer nanofibers are widely adopted in energy harvesting and pressure sensing
applications owing to the large contact area and inherent compressibility. Herein, a high …

Breathable, washable and wearable woven-structured triboelectric nanogenerators utilizing electrospun nanofibers for biomechanical energy harvesting and self …

X Guan, B Xu, M Wu, T Jing, Y Yang, Y Gao - Nano Energy, 2021 - Elsevier
With the rapid advancement in wearable electronics, energy harvesting devices based on
triboelectric nanogenerators (TENGs) have been intensively investigated for providing …