Biofluid‐activated biofuel cells, batteries, and supercapacitors: a comprehensive review

NT Garland, R Kaveti, AJ Bandodkar - Advanced Materials, 2023 - Wiley Online Library
Recent developments in wearable and implanted devices have resulted in numerous,
unprecedented capabilities that generate increasingly detailed information about a user's …

Advanced energy harvesters and energy storage for powering wearable and implantable medical devices

Z Gao, Y Zhou, J Zhang, J Foroughi, S Peng… - Advanced …, 2024 - Wiley Online Library
Wearable and implantable active medical devices (WIMDs) are transformative solutions for
improving healthcare, offering continuous health monitoring, early disease detection …

Smart nanoengineered electronic-scaffolds based on triboelectric nanogenerators as tissue batteries for integrated cartilage therapy

O Yue, X Wang, M Hou, M Zheng, D Hao, Z Bai, X Zou… - Nano Energy, 2023 - Elsevier
At present, cartilage defect therapy requires a long-term repair period and does not permit
real-time detection of the cartilage repair state named “black box”. Inspired by the …

Trends in piezoelectric nanomaterials towards green energy scavenging nanodevices

PK Singh, GA Kaur, M Shandilya, P Rana, R Rai… - Materials Today …, 2023 - Elsevier
Piezoelectric effect has been transformed by the introduction of green energy
nanotechnology in the creation of electricity. Energy is harvested through the mechanical …

[HTML][HTML] Piezoelectric energy harvesting and ultra-low-power management circuits for medical devices

N Almarri, J Chang, W Song, D Jiang, A Demosthenous - Nano Energy, 2024 - Elsevier
Piezoelectric energy harvesting enables the development of sustainable, batteryless
medical devices, powered by micro-watts level energy transduction and low-frequency body …

A compact dual-band implantable antenna for wireless biotelemetry in arteriovenous grafts

J Zhang, R Das, D Hoare, H Wang… - … on Antennas and …, 2023 - ieeexplore.ieee.org
Arteriovenous grafts (AVGs) are indispensable life-saving implants for chronic kidney
disease (CKD) patients undergoing hemodialysis (HD). However, AVGs will often fail due to …

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 …

Overview of talkative power conversion technologies

M Liserre, H Beiranvand, Y Leng, R Zhu… - IEEE Open Journal of …, 2023 - ieeexplore.ieee.org
Power Line Communication (PLC) and Simultaneous Wireless Information and Power
Transfer (SWIPT) are popular examples of applications, where power and information are …

In vivo flexible energy harvesting on porcine heart via highly-piezoelectric PIN–PMN–PT single crystal

J An, H Park, YH Jung, S Min, DH Kim, DJ Joe, SG Lee… - Nano Energy, 2024 - Elsevier
One of the main challenges with implantable biomedical devices is the replacement
surgeries of depleted batteries for elderly patients. This not only poses medical risks but also …

[HTML][HTML] Current state of the art and future directions for implantable sensors in medical technology: Clinical needs and engineering challenges

D Yogev, T Goldberg, A Arami, S Tejman-Yarden… - APL …, 2023 - pubs.aip.org
Implantable sensors have revolutionized the way we monitor biophysical and biochemical
parameters by enabling real-time closed-loop intervention or therapy. These technologies …