Conducting polymers (CPs), thanks to their unique properties, structures made on-demand, new composite mixtures, and possibility of deposit on a surface by chemical, physical, or …
Bioelectronics have made strides in improving clinical diagnostics and precision medicine. The potential of bioelectronics for bidirectional interfacing with biology through continuous …
Energy storage devices are limited by the trade-off between the transport properties and charge storage ability of materials. Electrolytic capacitors are kinetically fast, operating at …
Conductive polymeric microneedle (MN) arrays as biointerface materials show promise for the minimally invasive monitoring of analytes in biodevices and wearables. There is …
M Talikowska, X Fu, G Lisak - Biosensors and Bioelectronics, 2019 - Elsevier
The use of intrinsically conducting polymers (CPs) in wound care and skin tissue engineering presents a novel opportunity for accelerated wound healing, enhanced …
A Inoue, H Yuk, B Lu, X Zhao - Science advances, 2020 - science.org
Conducting polymers such as poly (3, 4-ethylenedioxythiophene): poly (styrene sulfonate)(PEDOT: PSS), polypyrrole (PPy), and polyaniline (PAni) have attracted great …
C Korupalli, H Li, N Nguyen, FL Mi… - Advanced …, 2021 - Wiley Online Library
The use of conductive materials to promote the activity of electrically responsive cells is an effective means of accelerating wound healing. This article focuses on recent advancements …
Poly (3, 4-ethylenedioxythiophene) s are the conducting polymers (CP) with the biggest prospects in the field of bioelectronics due to their combination of characteristics …
The field of organic bioelectronics is advancing rapidly in the development of materials and devices to precisely monitor and control biological signals. Electronics and biology can …