3D-printed PEDOT: PSS for soft robotics
Soft robotics is an emerging technology requiring conductive materials with inherently high
compliance to sense, control or actuate. Poly (3, 4-ethylenedioxythiophene): polystyrene …
compliance to sense, control or actuate. Poly (3, 4-ethylenedioxythiophene): polystyrene …
Conductive hydrogel‐based electrodes and electrolytes for stretchable and self‐healable supercapacitors
Stretchable self‐healing supercapacitors (SCs) can operate under extreme deformation and
restore their initial properties after damage with considerably improved durability and …
restore their initial properties after damage with considerably improved durability and …
Solution-processable, soft, self-adhesive, and conductive polymer composites for soft electronics
P Tan, H Wang, F **ao, X Lu, W Shang, X Deng… - Nature …, 2022 - nature.com
Soft electronics are rising electronic technologies towards applications spanning from
healthcare monitoring to medical implants. However, poor adhesion strength and significant …
healthcare monitoring to medical implants. However, poor adhesion strength and significant …
3D printing of conducting polymers
Conducting polymers are promising material candidates in diverse applications including
energy storage, flexible electronics, and bioelectronics. However, the fabrication of …
energy storage, flexible electronics, and bioelectronics. However, the fabrication of …
3D printed implantable hydrogel bioelectronics for electrophysiological monitoring and electrical modulation
Electronic devices based on conducting polymer hydrogels have emerged as one of the
most promising implantable bioelectronics for electrophysiological monitoring and diagnosis …
most promising implantable bioelectronics for electrophysiological monitoring and diagnosis …
Fatigue‐Resistant Conducting Polymer Hydrogels as Strain Sensor for Underwater Robotics
Conducting polymer hydrogels are widely used as strain sensors in light of their distinct skin‐
like softness, strain sensitivity, and environmental adaptiveness in the fields of wearable …
like softness, strain sensitivity, and environmental adaptiveness in the fields of wearable …
Additive Manufacturing of Ti3C2‐MXene‐Functionalized Conductive Polymer Hydrogels for Electromagnetic‐Interference Shielding
The ongoing miniaturization of devices and development of wireless and implantable
technologies demand electromagnetic interference (EMI)‐shielding materials with …
technologies demand electromagnetic interference (EMI)‐shielding materials with …
Stretchable freezing-tolerant triboelectric nanogenerator and strain sensor based on transparent, long-term stable, and highly conductive gelatin-based …
M Wu, X Wang, Y **a, Y Zhu, S Zhu, C Jia, W Guo, Q Li… - Nano Energy, 2022 - Elsevier
Conductive hydrogels have attracted tremendous attention for the next-generation
electronic/energy/robotic application owing to their excellent mechanical and electrical …
electronic/energy/robotic application owing to their excellent mechanical and electrical …
Digital selective transformation and patterning of highly conductive hydrogel bioelectronics by laser-induced phase separation
The patterning of poly (3, 4-ethylenedioxythiophene): poly (styrene sulfonate)(PEDOT: PSS)
hydrogels with excellent electrical property and spatial resolution is a challenge for …
hydrogels with excellent electrical property and spatial resolution is a challenge for …
MXene‐based conductive organohydrogels with long‐term environmental stability and multifunctionality
Y Wei, L **ang, H Ou, F Li, Y Zhang… - Advanced Functional …, 2020 - Wiley Online Library
Conductive hydrogels are promising interface materials utilized in bioelectronics for human–
machine interactions. However, the low‐temperature induced freezing problem and water …
machine interactions. However, the low‐temperature induced freezing problem and water …