Cellulose-based ionic conductor: An emerging material toward sustainable devices

Y Ye, L Yu, E Lizundia, Y Zhu, C Chen… - Chemical …, 2023 - ACS Publications
Ionic conductors (ICs) find widespread applications across different fields, such as smart
electronic, ionotronic, sensor, biomedical, and energy harvesting/storage devices, and …

Carbon‐Based Nanomaterials Electrodes of Ionic Soft Actuators: From Initial 1D Structure to 3D Composite Structure for Flexible Intelligent Devices

B Wang, P Huang, B Li, Z Wu, Y Xing, J Zhu, L Liu - Small, 2023 - Wiley Online Library
With the rapid development of autonomous and intelligent devices driven by soft actuators,
ion soft actuators in flexible intelligent devices have several advantages over other …

Highly electro-responsive ionic soft actuator based on graphene nanoplatelets-mediated functional carboxylated cellulose nanofibers

F Wang, D Huang, Q Li, Y Wu, B Yan, Z Wu… - Composites Science and …, 2023 - Elsevier
Electro-responsive ionic soft actuators have attracted increasing interest owing to the
promising applications for soft robots, biomimetic robots, active medical devices, flexible …

High-performance electroionic artificial muscles boosted by superior ion transport with Ti3C2Tx MXene/Cellulose nanocomposites for advanced 3D-motion actuation

Z Xu, B Zhu, X Liu, T Lan, Y Huang, Y Zhang… - Chemical Engineering …, 2023 - Elsevier
Low-voltage driven electro-ionic soft actuators with large deformation strain are of promising
candidate for high-performance artificial muscles, with practical applications in flexible …

Ecofriendly low voltage high-performance ionic artificial muscles based on bacterial cellulose nanofibers reinforced with polyvinyl alcohol

F Wang, D Huang, Y Wu, D Wang - Journal of Materials Science: Materials …, 2023 - Springer
High-performance electroactive ionic artificial muscles have received widespread attention
in braille displays, haptic devices, active biomedical devices, and soft robots. Herein, we …

Highly bendable ionic electroactive polymer actuator based on carboxylated bacterial cellulose by doping with MWCNT

F Wang, L Wang, Y Wang, D Wang - Applied Physics A, 2022 - Springer
Human-friendly electronic devices including medical active devices, soft haptic devices,
artificial muscle, and wearable electronics, will require the use of high-performance soft …

Ultrathin and flexible ANF/APP/PRGO composite films for high-performance electromagnetic interference shielding and Joule heating

H Wang, L Zhang, C Li - Industrial & Engineering Chemistry …, 2023 - ACS Publications
With the problem of electromagnetic interference (EMI) increasingly serious, the
development of lightweight and flexible electromagnetic shielding composite films with …

Ecofriendly electroactive AMPS-mediated functional carboxylated cellulose nanocrystals for high-performance ionic artificial muscles

F Wang, S Zheng, W Ye - Applied Physics A, 2023 - Springer
Ecofriendly high-performance ionic artificial muscles have received great interest in
wearable electronics, active medical devices, flexible sensors, biomimetic robots, and smart …

High-performance electro-responsive ionic soft actuators based on polypyrrole coated functional carboxylated bacterial cellulose nanofibers for bioinspired …

F Wang, G Xu, W Shen, S Park, Q Li - Sensors and Actuators A: Physical, 2023 - Elsevier
Low voltage high-performance soft actuators have attracted great attention in flexible haptic
displays, soft robots, biomedical devices, and braille displays. Herein, we report a low …

Nanocellulose‐based soft actuators and their applications

Y Cui, J Lin, Y Wu, M Chen, X Yang… - Journal of Polymer …, 2024 - Wiley Online Library
Nanocellulose has aroused growing attention in the design and fabrication of multifarious
soft actuators thanks to its abundant source, appropriate mechanical properties, and …