Charge generation and enhancement of key components of triboelectric nanogenerators: A review

J Wang, S Xu, C Hu - Advanced Materials, 2024 - Wiley Online Library
The past decade has witnessed remarkable progress in high‐performance Triboelectric
nanogenerators (TENG) with the design and synthesis of functional dielectric materials, the …

Biopolymers-based skin-interfaced triboelectric sensors

S Xu, PH de Souza Barbosa, W Wu - Nano Research, 2023 - Springer
Rapid advances in artificial intelligence, robotics, and remote healthcare have increased the
demand for sustainable and high-performance wearable sensors. Triboelectric devices are …

Ultra-stability and high output performance of a sliding mode triboelectric nanogenerator achieved by an asymmetric electrode structure design

G Li, J Wang, Y He, S Xu, S Fu, C Shan, H Wu… - Energy & …, 2024 - pubs.rsc.org
The sliding mode triboelectric nanogenerator (S-TENG) is a highly efficient technology for
harvesting environmental mechanical energy due to its advantages of sustainable energy …

Electro-mechano transduction of stacked triboelectric nanogenerator considering wave force: modeling, validation and applications

C Cao, F Shen, C ** wing for low-velocity water flow energy harvesting
J Zhang, Y Yu, H Li, M Zhu, S Zhang, C Gu, L Jiang… - Applied Energy, 2024 - Elsevier
Low-velocity water flow exists generally in open channel environments, and harvesting
energy from these water flows remains a challenge. Herein, a savonius flap** wing …

Tympanic membrane metamaterial inspired multifunctional low-frequency acoustic triboelectric nanogenerator

M Yuan, W Zhang, Y Tai, W Yan, Y Jiang, S Zhang… - Nano Energy, 2024 - Elsevier
This study introduces the Tympanic Membrane Metamaterial inspired acoustic Triboelectric
Nanogenerator (TMM-TENG), which exhibits subwavelength structural dimensions and …

An adaptive and space-energy efficiency vibration absorber system using a self-sensing and tunable magnetorheological elastomer

Z Zhu, Z Wang, K Dai, X Wang, H Zhang, W Zhang - Nano Energy, 2023 - Elsevier
Vibration monitoring and buffering is an important technical task in many industrial fields,
such as bridges, machine tools and other specific applications. Recently, a magneto …

Friction-induced vibration energy harvesting via a piezoelectric cantilever vibration energy collector

ZY **ang, JK Zhang, SJ Li, SL **e, FP Liu, RD Zhu… - Tribology …, 2023 - Elsevier
A piezoelectric cantilever vibration energy collector (PCVEC) was developed to harvest
friction-induced vibration (FIV) energy. Tests were conducted using a CETR machine. A …

Magnetic tri-stable triboelectric nanogenerator for harvesting energy from low-frequency vibration

D Tan, X Ou, J Zhou, K Wang, H Pan, J Peng, H Sun - Renewable Energy, 2025 - Elsevier
Traditional linear triboelectric nanogenerators (TENGs) exhibit small-amplitude responses
under low-frequency vibration, making it challenging to harvest low-frequency vibration …

Flexible multilayer MEMS coils and their application in energy harvesters

J Zhang, XJ Hou, S Qian, XX Bi, DX Hu, JJ Liu… - Science China …, 2024 - Springer
Electromagnetic vibration energy harvesters are promising for the power supply of wireless
sensor nodes, small electronic devices, and wearable electronics. Conventional …