Design strategies and effect comparisons toward efficient piezocatalytic system

C Wang, C Hu, F Chen, T Ma, Y Zhang, H Huang - Nano Energy, 2023 - Elsevier
Efficient conversion of mechanical energy via piezocatalysis behaves great potential on
relieving energy crisis and environmental deterioration, and functioning for sterilization …

Pendulum-based vibration energy harvesting: Mechanisms, transducer integration, and applications

T Wang - Energy Conversion and Management, 2023 - Elsevier
Vibration energy harvesting is a promising approach to provide wireless sensors and
portable electronics with sustainable power by converting ambient kinetic energy into …

Incorporation of ZnO encapsulated MoS2 to fabricate flexible piezoelectric nanogenerator and sensor

S Cao, H Zou, B Jiang, M Li, Q Yuan - Nano Energy, 2022 - Elsevier
Polymer based piezoelectric composite has attracted much attention in recent years due to
its applicability in the manufacture of piezoelectric nanogenerators and sensors, high …

Novel piezoelectric wind energy harvester based on coupled galloping phenomena with characterization and quantification of its dynamic behavior

H Kim, J Lee, J Seok - Energy Conversion and Management, 2022 - Elsevier
In this study, a novel piezoelectric energy harvester is proposed based on coupled
transverse and interference galloping to improve the energetic performance of the …

Nonlinear dynamical performance of microsize piezoelectric bridge-type energy harvesters based upon strain gradient-based meshless collocation approach

R Alshenawy, S Sahmani, B Safaei… - … Analysis with Boundary …, 2023 - Elsevier
In the current exploration, the size-dependent nonlinear dynamical performance of
piezoelectric bridge-type energy harvesters at microscale is analyzed. The proposed …

Wake galloping piezoelectric-electromagnetic hybrid ocean wave energy harvesting with oscillating water column

X Du, H Chen, C Li, Z Li, W Wang, D Guo, H Yu… - Applied Energy, 2024 - Elsevier
On-site continuous and energy-autonomous wireless sensor nodes are highly desirable for
the sustainable monitoring of the ocean environment. In this work, a wake galloping …

An electromagnetic energy harvester for applications in a high-speed rail pavement system

H Cao, L Kong, M Tang, Z Zhang, X Wu, L Lu… - International Journal of …, 2023 - Elsevier
Energy harvesting from ambient environment is one of the effective solutions to supply
power for low power electronic devices. There are still some challenges such as poor space …

[HTML][HTML] A graded metamaterial for broadband and high-capability piezoelectric energy harvesting

B Zhao, HR Thomsen, JM De Ponti, E Riva… - Energy Conversion and …, 2022 - Elsevier
This work proposes a graded metamaterial-based energy harvester integrating the
piezoelectric energy harvesting function targeting low-frequency ambient vibrations (< 100 …

2D Material‐Based Wearable Energy Harvesting Textiles: A Review

I Ali, M Dulal, N Karim, S Afroj - Small Structures, 2024 - Wiley Online Library
Wearable electronic textiles (e‐textiles) have emerged as a transformative technology
revolutionizing healthcare monitoring and communication by seamlessly integrating with the …

Self-powered transformer intelligent wireless temperature monitoring system based on an ultra-low acceleration piezoelectric vibration energy harvester

F Wang, M Zhou, P Wu, L Gao, X Chen, X Mu - Nano Energy, 2023 - Elsevier
The wireless sensor nodes used for monitoring the condition of grid equipment always be
powered by disposable batteries. However, it introduces disadvantages, such as …