Power generation for wearable systems

M Gao, P Wang, L Jiang, B Wang, Y Yao… - Energy & …, 2021 - pubs.rsc.org
Wearable devices are drawing increasing attention in both academia and industry in that
they can offer unprecedented information related to human health in real-time and human …

Emerging technologies of flexible pressure sensors: materials, modeling, devices, and manufacturing

Y Huang, X Fan, SC Chen… - Advanced functional …, 2019 - Wiley Online Library
As an important branch of wearable electronics, flexible pressure sensors have attracted
extensive research owing to their wide range of applications, such as human–machine …

High Linearity, Low Hysteresis Ti3C2Tx MXene/AgNW/Liquid Metal Self‐Healing Strain Sensor Modulated by Dynamic Disulfide and Hydrogen Bonds

Y Wang, W Qin, M Yang, Z Tian, W Guo… - Advanced Functional …, 2023 - Wiley Online Library
Flexible wearable strain sensors have received extensive attention in human–computer
interaction, soft robotics, and human health monitoring. Despite significant efforts in …

Flexible and stretchable smart display: materials, fabrication, device design, and system integration

JH Koo, DC Kim, HJ Shim, TH Kim… - Advanced Functional …, 2018 - Wiley Online Library
Recent technological advances in nanomaterials have driven the development of high‐
performance light‐emitting devices with flexible and stretchable form factors. Deformability in …

Nature-inspired structural materials for flexible electronic devices

Y Liu, K He, G Chen, WR Leow, X Chen - Chemical reviews, 2017 - ACS Publications
Exciting advancements have been made in the field of flexible electronic devices in the last
two decades and will certainly lead to a revolution in peoples' lives in the future. However …

Hybrid lead-free polymer-based nanocomposites with improved piezoelectric response for biomedical energy-harvesting applications: A review

RA Surmenev, T Orlova, RV Chernozem, AA Ivanova… - Nano Energy, 2019 - Elsevier
Lead-free alternative materials for converting mechanical energy into electrical energy
through piezoelectric transduction are of significant value in a diverse range of technological …

3D Printed Auxetic Structure‐Assisted Piezoelectric Energy Harvesting and Sensing

X Zhou, K Parida, J Chen, J Xiong… - Advanced Energy …, 2023 - Wiley Online Library
The fast development of wearable electronic systems requires a sustainable energy source
that can harvest energy from the ambient environment and does not require frequent …

Energy harvesters for wearable and stretchable electronics: from flexibility to stretchability

H Wu, YA Huang, F Xu, Y Duan, Z Yin - Advanced materials, 2016 - Wiley Online Library
The rapid advancements of wearable electronics have caused a paradigm shift in consumer
electronics, and the emerging development of stretchable electronics opens a new spectrum …

A review on wearable electrospun polymeric piezoelectric sensors and energy harvesters

S Mirjalali, A Mahdavi Varposhti… - Macromolecular …, 2023 - Wiley Online Library
In recent years, wearable sensors and energy harvesters have shown great potential for a
wide range of applications in personalized healthcare, robotics, and human–machine …

[HTML][HTML] All 3D-printed stretchable piezoelectric nanogenerator with non-protruding kirigami structure

X Zhou, K Parida, O Halevi, Y Liu, J Xiong, S Magdassi… - Nano Energy, 2020 - Elsevier
With the advancement of wearable electronics, stretchable energy harvesters are attractive
to reduce the need of frequent charging of wearable devices. In this work, a stretchable …