Advanced dielectric materials for triboelectric nanogenerators: principles, methods, and applications

Y Li, Y Luo, H Deng, S Shi, S Tian, H Wu… - Advanced …, 2024‏ - Wiley Online Library
Triboelectric nanogenerator (TENG) manifests distinct advantages such as multiple
structural selectivity, diverse selection of materials, environmental adaptability, low cost, and …

Hybrid triboelectric-electromagnetic nanogenerators for mechanical energy harvesting: A review

JV Vidal, V Slabov, AL Kholkin, MPS Dos Santos - Nano-Micro Letters, 2021‏ - Springer
Motion-driven electromagnetic-triboelectric energy generators (E-TENGs) hold a great
potential to provide higher voltages, higher currents and wider operating bandwidths than …

A self‐powered and self‐sensing lower‐limb system for smart healthcare

L Kong, Z Fang, T Zhang, Z Zhang… - Advanced Energy …, 2023‏ - Wiley Online Library
In the age of the artificial intelligence of things (AIoT), wearable devices have been
extensively developed for smart healthcare. This paper proposes a self‐powered and self …

Breeze-wind-energy-powered autonomous wireless anemometer based on rolling contact-electrification

X Fu, S Xu, Y Gao, X Zhang, G Liu, H Zhou… - ACS Energy …, 2021‏ - ACS Publications
A triboelectric nanogenerator (TENG) has great advantages in harvesting low-frequency
mechanical energy, which is very suitable for energy harvesters and active sensors for …

Durability improvement of breeze‐driven triboelectric‐electromagnetic hybrid nanogenerator by a travel‐controlled approach

Y Luo, P Chen, LNY Cao, Z Xu, Y Wu… - Advanced Functional …, 2022‏ - Wiley Online Library
Triboelectric nanogenerator (TENG), as an emerging technology for distributed energy
harvesting, provides a promising energy solution for self‐powered environmental …

A single‐droplet electricity generator achieves an ultrahigh output over 100 V without pre‐charging

Q Zhang, Y Li, H Cai, M Yao, H Zhang, L Guo… - Advanced …, 2021‏ - Wiley Online Library
The working principle of the triboelectric nanogenerator (TENG), contact electrification and
electrostatic induction, has been used to harvest raindrop energy in recent years. However …

Sustainable long‐term and wide‐area environment monitoring network based on distributed self‐powered wireless sensing nodes

D Liu, C Li, P Chen, X Zhao, W Tang… - Advanced Energy …, 2023‏ - Wiley Online Library
Environmental monitoring of local climatic variations plays a vital role in the research on
global warming, species diversity, ecological sustainability, and so on. Traditional …

Triboelectric nanogenerators for smart agriculture

S Dai, X Li, C Jiang, J **, Y Ying - InfoMat, 2023‏ - Wiley Online Library
Rapid iterations of sensing, energy, and communication technologies transform traditional
agriculture into standardized, intensive, and smart modern agriculture. However, the energy …

Alternating magnetic field‐enhanced triboelectric nanogenerator for low‐speed flow energy harvesting

B Zhang, Q Gao, W Li, M Zhu, H Li… - Advanced Functional …, 2023‏ - Wiley Online Library
Low‐speed flow energy, such as breezes and rivers, which are abundant in smart
agriculture and smart cities, faces significant challenges in efficient harvesting as an …

Overview of human kinetic energy harvesting and application

L Wang, Z Fei, Y Qi, C Zhang, L Zhao… - ACS Applied Energy …, 2022‏ - ACS Publications
In the Internet of Things era, wearable electronics and sensors have become essential for
health monitoring and human computer interaction. However, a continuous power supply is …