Perspectives on recent advancements in energy harvesting, sensing and bio-medical applications of piezoelectric gels

T Vijayakanth, S Shankar, G Finkelstein-Zuta… - Chemical Society …, 2023 - pubs.rsc.org
The development of next-generation bioelectronics, as well as the powering of consumer
and medical devices, require power sources that are soft, flexible, extensible, and even …

Self-powered sensing systems with learning capability

A Alagumalai, W Shou, O Mahian, M Aghbashlo… - Joule, 2022 - cell.com
Self-powered sensing systems augmented with machine learning (ML) represent a path
toward the large-scale deployment of the internet of things (IoT). With autonomous energy …

Advanced functional composite materials toward E‐skin for health monitoring and artificial intelligence

QJ Sun, QT Lai, Z Tang, XG Tang… - Advanced Materials …, 2023 - Wiley Online Library
Abstract Electronic skin (E‐skin), especially the wearable sensors efficiently detect various
stimuli attracted huge research interest owing to their potential applications in health …

Green flexible electronics based on starch

H Xiang, Z Li, H Liu, T Chen, H Zhou… - npj Flexible Electronics, 2022 - nature.com
Flexible electronics (FEs) with excellent flexibility or foldability may find widespread
applications in the wearable devices, artificial intelligence (AI), Internet of Things (IoT), and …

[HTML][HTML] Insights and perspectives on graphene-PVDF based nanocomposite materials for harvesting mechanical energy

M Pusty, PM Shirage - Journal of Alloys and Compounds, 2022 - Elsevier
A great deal of research work on sustainable and renewable energies is carried out to
satisfy the incremental requirement for miniature, uninterrupted and self-reliant power …

Advances in Piezoelectret Materials‐Based Bidirectional Haptic Communication Devices

Y Gong, K Zhang, IM Lei, Y Wang… - Advanced Materials, 2024 - Wiley Online Library
Bidirectional haptic communication devices accelerate the revolution of virtual/augmented
reality and flexible/wearable electronics. As an emerging kind of flexible piezoelectric …

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 review of flexible lead-free piezoelectric energy harvester

R Yue, SG Ramaraj, H Liu, D Elamaran… - Journal of Alloys and …, 2022 - Elsevier
Piezoelectric nanogenerator has emerged as a promising power generation device that
converts mechanical energy into electrical energy. Flexible and stretchable piezoelectric …

Flourishing energy harvesters for future body sensor network: from single to multiple energy sources

T He, X Guo, C Lee - IScience, 2021 - cell.com
Body sensor network (bodyNET) offers possibilities for future disease diagnosis, preventive
health care, rehabilitation, and treatment. However, the eventual realization demands …

Energy harvesters for wearable electronics and biomedical devices

MN Hasan, S Sahlan, K Osman… - Advanced Materials …, 2021 - Wiley Online Library
Energy harvesters (EHs) are widely used to transform ambient energy sources into electrical
energy, and have tremendous potential to power wearables electronics and biomedical …