[HTML][HTML] Rotational energy harvesting for self-powered sensing

H Fu, X Mei, D Yurchenko, S Zhou, S Theodossiades… - Joule, 2021 - cell.com
Advances in wireless sensors, biomedical devices, and micro-robotics exert more pressure
on creating reliable, miniaturized, and self-sustained energy supply solutions for these micro …

[HTML][HTML] Energy harvesting towards self-powered IoT devices

H Elahi, K Munir, M Eugeni, S Atek, P Gaudenzi - Energies, 2020 - mdpi.com
The internet of things (IoT) manages a large infrastructure of web-enabled smart devices,
small devices that use embedded systems, such as processors, sensors, and …

Thermoelectricity for IoT–A review

M Haras, T Skotnicki - Nano Energy, 2018 - Elsevier
We are witnessing an unprecedented expansion of Internet of Things (IoT) market, whose
nodes are already outnumbering human population several times. Despite the huge …

[HTML][HTML] Theoretical modeling of triboelectric nanogenerators (TENGs)

J Shao, M Willatzen, ZL Wang - Journal of Applied Physics, 2020 - pubs.aip.org
Triboelectric nanogenerators (TENGs), using Maxwell's displacement current as the driving
force, can effectively convert mechanical energy into electricity. In this work, an extensive …

Inorganic thermoelectric materials: A review

MN Hasan, H Wahid, N Nayan… - International Journal of …, 2020 - Wiley Online Library
Thermoelectric generator, which converts heat into electrical energy, has great potential to
power portable devices. Nevertheless, the efficiency of a thermoelectric generator suffers …

Towards a green and self-powered Internet of Things using piezoelectric energy harvesting

M Shirvanimoghaddam, K Shirvanimoghaddam… - Ieee …, 2019 - ieeexplore.ieee.org
The Internet of Things (IoT) is a revolutionizing technology which aims to create an
ecosystem of connected objects and embedded devices and provide ubiquitous connectivity …

An electromagnetic rotational energy harvester using sprung eccentric rotor, driven by pseudo-walking motion

MA Halim, R Rantz, Q Zhang, L Gu, K Yang, S Roundy - Applied Energy, 2018 - Elsevier
In this work, an electromagnetic energy harvesting device using a sprung eccentric rotor has
been designed, optimized and characterized to harvest power from pseudo-walking signals …

A review of acoustic power transfer for bio-medical implants

H Basaeri, DB Christensen… - Smart Materials and …, 2016 - iopscience.iop.org
Bio-implantable devices have been used to perform therapeutic functions such as drug
delivery or diagnostic monitoring of physiological parameters. Proper operation of these …

Optimizing orientation of piezoelectric cantilever beam for harvesting energy from human walking

I Izadgoshasb, YY Lim, N Lake, L Tang… - Energy conversion and …, 2018 - Elsevier
Harvesting energy from human body motion for powering small scale electronic devices is
attracting research interest in recent years. Piezoelectric energy harvester (PEH) capable of …

On the efficiency of piezoelectric energy harvesters

Z Yang, A Erturk, J Zu - Extreme Mechanics Letters, 2017 - Elsevier
Energy harvesting is an essential technology for enabling low-power, maintenance-free
electronic devices, and thus has attracted a great deal of attention in recent years. A variety …