Advances in wireless, batteryless, implantable electronics for real-time, continuous physiological monitoring

H Kim, B Rigo, G Wong, YJ Lee, WH Yeo - Nano-Micro Letters, 2024‏ - Springer
This review summarizes recent progress in develo** wireless, batteryless, fully
implantable biomedical devices for real-time continuous physiological signal monitoring …

A review of energy harvesting using piezoelectric materials: state-of-the-art a decade later (2008–2018)

M Safaei, HA Sodano, SR Anton - Smart materials and structures, 2019‏ - iopscience.iop.org
Energy harvesting technologies have been explored by researchers for more than two
decades as an alternative to conventional power sources (eg batteries) for small-sized and …

Construction of bio‐piezoelectric platforms: From structures and synthesis to applications

Q Xu, X Gao, S Zhao, YN Liu, D Zhang… - Advanced …, 2021‏ - Wiley Online Library
Piezoelectric materials, with their unique ability for mechanical‐electrical energy conversion,
have been widely applied in important fields such as sensing, energy harvesting …

Stretchable piezoelectric energy harvesters and self-powered sensors for wearable and implantable devices

H Zhou, Y Zhang, Y Qiu, H Wu, W Qin, Y Liao… - Biosensors and …, 2020‏ - Elsevier
Wearable and implantable bio-integrated electronics have started to gain momentum
because of their essential role in improving the quality of life for various patients and healthy …

Emerging implantable energy harvesters and self-powered implantable medical electronics

D Jiang, B Shi, H Ouyang, Y Fan, ZL Wang, Z Li - ACS nano, 2020‏ - ACS Publications
Implantable energy harvesters (IEHs) are the crucial component for self-powered devices.
By harvesting energy from organisms such as heartbeat, respiration, and chemical energy …

Biocompatible and long-term monitoring strategies of wearable, ingestible and implantable biosensors: reform the next generation healthcare

T Lu, S Ji, W **, Q Yang, Q Luo, TL Ren - Sensors, 2023‏ - mdpi.com
Sensors enable the detection of physiological indicators and pathological markers to assist
in the diagnosis, treatment, and long-term monitoring of diseases, in addition to playing an …

Flexible piezoelectric acoustic sensors and machine learning for speech processing

YH Jung, SK Hong, HS Wang, JH Han… - Advanced …, 2020‏ - Wiley Online Library
Flexible piezoelectric acoustic sensors have been developed to generate multiple sound
signals with high sensitivity, shifting the paradigm of future voice technologies. Speech …

Electrospun PVDF-based piezoelectric nanofibers: materials, structures, and applications

M Zhang, C Liu, B Li, Y Shen, H Wang, K Ji… - Nanoscale …, 2023‏ - pubs.rsc.org
Polyvinylidene fluoride (PVDF) has been considered as a promising piezoelectric material
for advanced sensing and energy storage systems because of its high dielectric constant …

Piezoelectric energy harvesters for biomedical applications

F Ali, W Raza, X Li, H Gul, KH Kim - Nano Energy, 2019‏ - Elsevier
Recently, implantable medical electronics (IMEs) have become essential for extending
patient's lives. Extending the lifespan of these devices has in turn become a main challenge …

Implantable energy‐harvesting devices

B Shi, Z Li, Y Fan - Advanced Materials, 2018‏ - Wiley Online Library
The sustainable operation of implanted medical devices is essential for healthcare
applications. However, limited battery capacity is a key challenge for most implantable …