Hybrid energy harvesting technology: From materials, structural design, system integration to applications

H Liu, H Fu, L Sun, C Lee, EM Yeatman - Renewable and sustainable …, 2021 - Elsevier
The last decade has witnessed significant advances in energy harvesting technology for the
realization of self-charging electronics and self-powered wireless sensor nodes (WSNs). To …

Development trends and perspectives of future sensors and MEMS/NEMS

J Zhu, X Liu, Q Shi, T He, Z Sun, X Guo, W Liu… - Micromachines, 2019 - mdpi.com
With the fast development of the fifth-generation cellular network technology (5G), the future
sensors and microelectromechanical systems (MEMS)/nanoelectromechanical systems …

Progress in TENG technology—A journey from energy harvesting to nanoenergy and nanosystem

J Zhu, M Zhu, Q Shi, F Wen, L Liu, B Dong, A Haroun… - …, 2020 - Wiley Online Library
Triboelectric nanogenerator (TENG) technology is a promising research field for energy
harvesting and nanoenergy and nanosystem (NENS) in the aspect of mechanical, electrical …

[HTML][HTML] Electromagnetic vibrational energy harvesters: A review

A Muscat, S Bhattacharya, Y Zhu - Sensors, 2022 - mdpi.com
As industries need more real-time monitoring and interconnected systems, the demand for
wireless sensors expands. Vibrational energy harvesters are a potential solution for …

A review on design improvements and techniques for mechanical energy harvesting using piezoelectric and electromagnetic schemes

B Maamer, A Boughamoura, AMRF El-Bab… - Energy Conversion and …, 2019 - Elsevier
Energy harvesting has gained a growing attention and has seen great advancements during
the last decades. Among energy sources, mechanical energy is one of the most investigated …

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 …

A multimodal hybrid energy harvester based on piezoelectric-electromagnetic mechanisms for low-frequency ambient vibrations

RM Toyabur, M Salauddin, H Cho, JY Park - Energy conversion and …, 2018 - Elsevier
In this paper, we proposed and experimentally validated a vibration-based multimodal
hybrid piezoelectric–electromagnetic energy harvester having multiple mechanical degrees …

More than energy harvesting in electret electronics‐moving toward next‐generation functional system

J Zhu, Y Yang, H Zhang, Z Zhao… - Advanced Functional …, 2023 - Wiley Online Library
Electrets are normally applied for energy conversion from mechanical vibration sources in
the environment to electrical power without any friction, which induces electric device …

A rotational pendulum based electromagnetic/triboelectric hybrid-generator for ultra-low-frequency vibrations aiming at human motion and blue energy applications

C Hou, T Chen, Y Li, M Huang, Q Shi, H Liu, L Sun… - Nano Energy, 2019 - Elsevier
There is abundance of low-frequency biomechanical and blue energy that can be harvested
from our ambient environment. Utilization of these energy plays a significant role for the …

A comprehensive review on vibration based micro power generators using electromagnetic and piezoelectric transducer mechanisms

ARM Siddique, S Mahmud, B Van Heyst - Energy Conversion and …, 2015 - Elsevier
The area of micro power generation has developed significantly over the last two decades in
the field of microelectromechanical systems, self-powered wireless sensor nodes, and …