A comprehensive review on piezoelectric energy harvesting technology: Materials, mechanisms, and applications

H Liu, J Zhong, C Lee, SW Lee, L Lin - Applied physics reviews, 2018 - pubs.aip.org
The last decade has witnessed significant advances in energy harvesting technologies as a
possible alternative to provide a continuous power supply for small, low-power devices in …

[HTML][HTML] A review on vibration-based piezoelectric energy harvesting from the aspect of compliant mechanisms

H Liang, G Hao, OZ Olszewski - Sensors and Actuators A: Physical, 2021 - Elsevier
Piezoelectric energy harvesters (PEHs) promote the construction of a smarter world through
powering electric devices with energy scavenged from environmental vibrations by means of …

Towards oxide electronics: a roadmap

M Coll, J Fontcuberta, M Althammer, M Bibes… - Applied surface …, 2019 - orbit.dtu.dk
At the end of a rush lasting over half a century, in which CMOS technology has been
experiencing a constant and breathtaking increase of device speed and density, Moore's …

Flexible all-inorganic Sm-doped PMN-PT film with ultrahigh piezoelectric coefficient for mechanical energy harvesting, motion sensing, and human-machine …

P Lv, J Qian, C Yang, T Liu, Y Wang, D Wang, S Huang… - Nano Energy, 2022 - Elsevier
In the era of artificial intelligence and the internet of things, the emergence of flexible
MICAtronics, heterostructures made by van der Waals epitaxy on layered mica, has attracted …

Lead‐free perovskite nanowire‐employed piezopolymer for highly efficient flexible nanocomposite energy harvester

CK Jeong, C Baek, AI Kingon, KI Park, SH Kim - Small, 2018 - Wiley Online Library
In the past two decades, mechanical energy harvesting technologies have been developed
in various ways to support or power small‐scale electronics. Nevertheless, the strategy for …

Technology transfer of lead-free (K, Na) NbO3-based piezoelectric ceramics

HC Thong, C Zhao, Z Zhou, CF Wu, YX Liu, ZZ Du… - Materials Today, 2019 - Elsevier
Piezoelectric materials are an important functional material in the modern world because
they are capable of converting electrical energy into mechanical energy and vice versa …

Piezoelectric MEMS vibrational energy harvesters: Advances and outlook

MT Todaro, F Guido, V Mastronardi, D Desmaele… - Microelectronic …, 2017 - Elsevier
Piezoelectric MEMS energy harvesters based on thin films are compact and cost-effective
microgenerators for scavenging environmental vibrations. This technology is promising for …

Flexible vibrational energy harvesting devices using strain-engineered perovskite piezoelectric thin films

SS Won, H Seo, M Kawahara, S Glinsek, J Lee, Y Kim… - Nano Energy, 2019 - Elsevier
The material properties of Pb (Zr, Ti) O 3 (PZT) thin film with a LaNiO 3 (LNO) buffer layer on
an ultra-thin Ni-Cr-based austenitic steel metal foil substrate are systematically investigated …

Progress in lead-free piezoelectric nanofiller materials and related composite nanogenerator devices

Y Zhang, H Kim, Q Wang, W Jo, AI Kingon… - Nanoscale …, 2020 - pubs.rsc.org
Current piezoelectric device systems need a significant reduction in size and weight so that
electronic modules of increasing capacity and functionality can be incorporated into a great …

Comprehensive biocompatibility of nontoxic and high-output flexible energy harvester using lead-free piezoceramic thin film

CK Jeong, JH Han, H Palneedi, H Park, GT Hwang… - Apl Materials, 2017 - pubs.aip.org
Flexible piezoelectric energy harvesters have been regarded as an overarching candidate
for achieving self-powered electronic systems for environmental sensors and biomedical …