Piezoelectric nanogenerators for personalized healthcare

W Deng, Y Zhou, A Libanori, G Chen, W Yang… - Chemical Society …, 2022‏ - pubs.rsc.org
The development of flexible piezoelectric nanogenerators has experienced rapid progress
in the past decade and is serving as the technological foundation of future state-of-the-art …

A comprehensive review on piezoelectric energy harvesting technology: Materials, mechanisms, and applications

H Liu, J Zhong, C Lee, SW Lee, L Lin - Applied physics reviews, 2018‏ - pubs.aip.org
The last decade has witnessed significant advances in energy harvesting technologies as a
possible alternative to provide a continuous power supply for small, low-power devices in …

Sensing, computing, and communications for energy harvesting IoTs: A survey

D Ma, G Lan, M Hassan, W Hu… - … Surveys & Tutorials, 2019‏ - ieeexplore.ieee.org
With the growing number of deployments of Internet of Things (IoT) infrastructure for a wide
variety of applications, the battery maintenance has become a major limitation for the …

Flexible, stretchable sensors for wearable health monitoring: sensing mechanisms, materials, fabrication strategies and features

Y Liu, H Wang, W Zhao, M Zhang, H Qin, Y ** in Africa has been practiced for many years through successive generations
and along inherited patterns. Beekeepers continue to face challenges in accessing …

A shoe-mounted frequency up-converted piezoelectric energy harvester

Z Yin, S Gao, L **, S Guo, Q Wu, Z Li - Sensors and Actuators A: Physical, 2021‏ - Elsevier
This study presents a shoe-mounted piezoelectric energy harvester (PEH) to harvest energy
from human walking. The PEH realizes frequency up-conversion technology through the …