Boosting flexible electronics with integration of two‐dimensional materials

C Hou, S Zhang, R Liu, T Gemming, A Bachmatiuk… - InfoMat, 2024 - Wiley Online Library
Flexible electronics has emerged as a continuously growing field of study. Two‐dimensional
(2D) materials often act as conductors and electrodes in electronic devices, holding …

A current-enhanced triboelectric nanogenerator with crossed rollers for harvesting wave energy

D Zhao, H Li, Y Yu, Y Wang, J Wang, Q Gao, ZL Wang… - Nano Energy, 2023 - Elsevier
To enhance the adaptability and usability of the triboelectric nanogenerator (TENG) in wave
environments, a current-enhanced TENG with crossed rollers (CE-TENG) is proposed in this …

A piezoelectric-electromagnetic hybrid energy harvester for low-frequency wave motion and self-sensing wave environment monitoring

L He, R Liu, X Liu, X Zheng, L Zhang, J Lin - Energy Conversion and …, 2024 - Elsevier
Techniques for harvesting energy and environmental monitoring are crucial for the
development and application of wave energy. Here, we propose a piezoelectric …

Recent advances in wave-driven triboelectric nanogenerators: from manufacturing to applications

C Zhu, C Xiang, M Wu, C Yu, S Dai… - … Journal of Extreme …, 2024 - iopscience.iop.org
The ocean is the largest reservoir of renewable energy on earth, in which wave energy
occupies an important position due to its high energy density and extensive distribution. As a …

A Synergistically Enhanced Triboelectric‐Electromagnetic Hybrid Generator Enabled by Multifunctional Amorphous Alloy for Highly Efficient Self‐Powered System

S Gong, B Tang, C Liu, W Zhao, J Chen… - Advanced …, 2024 - Wiley Online Library
Triboelectric‐electromagnetic hybrid generator (TEHG) has emerged as an effective
technology for mechanical energy harvesting. However, the independent operation of …

A self-powered underwater glider using bidirectional swing-rotation hybrid nanogenerator

Z Wang, L Hou, D Yang, M Zhang, S Liu, Z Yu, J Sun… - Nano Energy, 2024 - Elsevier
With the development of marine exploitation, ocean robots pose a great challenge to
traditional battery power supply, scavenging green and sustainable energy from the ocean …

Bionic dragonfly staggered flapping hydrofoils triboelectric-electromagnetic hybrid generator for low-speed water flow energy harvesting

L Dong, J Zhu, H Li, J Zhang, D Zhao, ZL Wang, L Gu… - Nano Energy, 2024 - Elsevier
Water flow energy harvesting with triboelectric nanogenerators (TENGs) is in the spotlight.
However, existing front-end energy harvesting structures have drawbacks, such as …

Design standards for high‐performance liquid‐solid tubular triboelectric nanogenerators

Y Li, Y Wang, Y Ge, X Cao, ZL Wang - SmartMat, 2024 - Wiley Online Library
Liquid‐solid tubular triboelectric nanogenerators (LST‐TENGs) hold significant promise for
environmental mechanical energy harvesting due to advantages such as low wear, long …

Constructing High-Performance and Versatile Liquid-Solid Triboelectric Nanogenerator with Inflatable Columnar Units

L Luo, C Liu, R Gu, M Chen, Y Wang… - … Journal of Extreme …, 2024 - iopscience.iop.org
The use of water resources for energy generation has become increasingly prevalent,
encompassing the conversion of kinetic energy from streams, tides, and waves into …

Networking Strategies of Triboelectric Nanogenerators for Harvesting Ocean Blue Energy

X Li, L Xu, ZL Wang - Nanoenergy Advances, 2024 - mdpi.com
The utilization of abundant blue energy in the ocean could greatly contribute to achieving
carbon neutrality. However, the unsolved economic and technical challenges of traditional …