Triboelectric nanogenerator enabled wearable sensors and electronics for sustainable internet of things integrated green earth

Y Yang, X Guo, M Zhu, Z Sun, Z Zhang… - Advanced Energy …, 2023 - Wiley Online Library
The advancement of the Internet of Things/5G infrastructure requires a low‐cost ubiquitous
sensory network to realize an autonomous system for information collection and processing …

[HTML][HTML] Multidiscipline applications of triboelectric nanogenerators for the intelligent era of internet of things

X Cao, Y Xiong, J Sun, X Xie, Q Sun, ZL Wang - Nano-Micro Letters, 2023 - Springer
In the era of 5G and the Internet of things (IoTs), various human–computer interaction
systems based on the integration of triboelectric nanogenerators (TENGs) and IoTs …

Ultra‐sensitive, deformable, and transparent triboelectric tactile sensor based on micro‐pyramid patterned ionic hydrogel for interactive human–machine interfaces

K Tao, Z Chen, J Yu, H Zeng, J Wu, Z Wu… - Advanced …, 2022 - Wiley Online Library
Rapid advances in wearable electronics and mechno‐sensational human–machine
interfaces impose great challenges in developing flexible and deformable tactile sensors …

Deep-learning enabled active biomimetic multifunctional hydrogel electronic skin

K Tao, J Yu, J Zhang, A Bao, H Hu, T Ye, Q Ding… - ACS …, 2023 - ACS Publications
There is huge demand for recreating human skin with the functions of epidermis and dermis
for interactions with the physical world. Herein, a biomimetic, ultrasensitive, and …

Ultrastable, stretchable, highly conductive and transparent hydrogels enabled by salt-percolation for high-performance temperature and strain sensing

Z Wu, W Shi, H Ding, B Zhong, W Huang… - Journal of Materials …, 2021 - pubs.rsc.org
Ionic hydrogels are promising candidates for fabricating stretchable electronics, but the
deficiency in drying and freezing tolerances severely limits their application. Here, we report …

[HTML][HTML] Self-healing, self-adhesive and stable organohydrogel-based stretchable oxygen sensor with high performance at room temperature

Y Liang, Z Wu, Y Wei, Q Ding, M Zilberman, K Tao… - Nano-Micro Letters, 2022 - Springer
With the advent of the 5G era and the rise of the Internet of Things, various sensors have
received unprecedented attention, especially wearable and stretchable sensors in the …

[HTML][HTML] Recent progress in the energy harvesting technology—from self-powered sensors to self-sustained IoT, and new applications

L Liu, X Guo, W Liu, C Lee - Nanomaterials, 2021 - mdpi.com
With the fast development of energy harvesting technology, micro-nano or scale-up energy
harvesters have been proposed to allow sensors or internet of things (IoT) applications with …

Perspectives in flow-induced vibration energy harvesting

J Wang, D Yurchenko, G Hu, L Zhao, L Tang… - Applied Physics …, 2021 - pubs.aip.org
Flow-induced vibration (FIV) energy harvesting has attracted extensive research interest in
the past two decades. Remarkable research achievements and contributions from different …

[HTML][HTML] Insole-based systems for health monitoring: Current solutions and research challenges

S Subramaniam, S Majumder, AI Faisal, MJ Deen - Sensors, 2022 - mdpi.com
Wearable health monitoring devices allow for measuring physiological parameters without
restricting individuals' daily activities, providing information that is reflective of an individual's …

Triboelectric nanogenerators for wearable sensing applications: A system level analysis

RL Bulathsinghala, W Ding, R Dharmasena - Nano Energy, 2023 - Elsevier
Wearable sensing is a rapidly expanding research area with significant future potential and
impact, encompassing lifestyle, sports & fitness and healthcare applications. The target of …