Electrohydrodynamic jet printing: Introductory concepts and considerations

N Mkhize, H Bhaskaran - Small Science, 2022 - Wiley Online Library
Electrohydrodynamic (EHD) jet printing is an emerging technique in the field of additive
manufacturing. Due to its versatility in the inks it can print, and most importantly, the printing …

Overview of recent progress in electrohydrodynamic jet printing in practical printed electronics: Focus on the variety of printable materials for each component

H Kwon, J Hong, SY Nam, HH Choi, X Li… - Materials …, 2021 - pubs.rsc.org
Printed electronics will be essential in the implementation of next-generation electronic
devices, because printing facilitates fabrication of devices on various rigid, thin, or flexible …

Ultrastretchable, self-healable and adhesive composite organohydrogels with a fast response for human–machine interface applications

Z Xie, Z Chen, X Hu, HY Mi, J Zou, H Li, Y Liu… - Journal of Materials …, 2022 - pubs.rsc.org
Hydrogel based flexible sensors have been considered as promising wearable devices in
human–machine interactions, which are of great significance in mobile communications …

MXene reinforced organohydrogels with ultra-stability, high sensitivity and anti-freezing ability for flexible strain sensors

SJ Wang, Z Chen, X Hu, J Zou, Z Xie, HY Mi… - Journal of Materials …, 2022 - pubs.rsc.org
Hydrogels combining good biocompatibility and super flexibility have attracted tremendous
interest in flexible sensors. Nevertheless, they always suffer from poor stability due to their …

High precision 3D printing for micro to nano scale biomedical and electronic devices

K Muldoon, Y Song, Z Ahmad, X Chen, MW Chang - Micromachines, 2022 - mdpi.com
Three dimensional printing (3DP), or additive manufacturing, is an exponentially growing
process in the fabrication of various technologies with applications in sectors such as …

PEDOT-based stretchable optoelectronic materials and devices for bioelectronic interfaces

W Li, Y Li, Z Song, YX Wang, W Hu - Chemical Society Reviews, 2024 - pubs.rsc.org
The rapid development of wearable and implantable electronics has enabled the real-time
transmission of electrophysiological signals in situ, thus allowing the precise monitoring and …

Recent progress in non-photolithographic patterning of polymer thin films

M Qiu, W Du, S Zhou, P Cai, Y Luo, X Wang… - Progress in Polymer …, 2023 - Elsevier
Patterned polymer thin films are essential components in many devices and applications
owing to the multi-functionality, flexibility, lightweight and cost-efficiency. Unfortunately …

High-resolution flexible electronic devices by electrohydrodynamic jet printing: From materials toward applications

X Zheng, M Hu, Y Liu, J Zhang, X Li, X Li… - Science China Materials, 2022 - Springer
High-resolution flexible electronic devices are widely used in the fields of soft robotics, smart
human-machine interaction, and intelligent e-healthcare monitoring due to their mechanical …

In‐Situ Photoelectron Spectroscopy Study on the Air Degradation of PEDOT: PSS in Terms of Electrical and Thermoelectric Properties

DJ Yun, J Jung, YM Sung, H Ra, JM Kim… - Advanced Electronic …, 2020 - Wiley Online Library
Despite excellent electrical and mechanical properties, practical application of poly (3, 4‐
ethylenedioxythiophene) polymerized with poly (4‐styrenesulfonate)(PEDOT: PSS) face the …

Review on PEDOT: PSS-based conductive fabric

F Alhashmi Alamer, K Althagafy, O Alsalmi, A Aldeih… - ACS …, 2022 - ACS Publications
This article reviews conductive fabrics made with the conductive polymer poly (3, 4-
ethylenedioxythiophene): poly (styrenesulfonate)(PEDOT: PSS), their fabrication techniques …