Cellulose-based intelligent responsive materials: a review
Due to the rapid development of intelligent technology and the pursuit of green
environmental protection, responsive materials with single response and actuation can no …
environmental protection, responsive materials with single response and actuation can no …
Carbon‐Based Nanomaterials Electrodes of Ionic Soft Actuators: From Initial 1D Structure to 3D Composite Structure for Flexible Intelligent Devices
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 …
ion soft actuators in flexible intelligent devices have several advantages over other …
High-performance electro-responsive ionic soft actuators based on polypyrrole coated functional carboxylated bacterial cellulose nanofibers for bioinspired …
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 …
displays, soft robots, biomedical devices, and braille displays. Herein, we report a low …
Advanced IPMC Actuators Utilizing Multifaceted Platinum-Coated Sulfonated Polyvinyl Alcohol-Graphene Oxide-Nanoform ZnO Nanocomposite Membranes
IA Ansari - Journal of Polymers and the Environment, 2024 - Springer
This article details the development of an electrically-responsive bending actuator from a
graphene oxide (GO), nanosized-ZnO, and sulfonated poly (vinyl alcohol)(S-PVA) …
graphene oxide (GO), nanosized-ZnO, and sulfonated poly (vinyl alcohol)(S-PVA) …
High‐performance carboxylated cellulose nanofibers‐based electro‐responsive ionic artificial muscles toward bioinspired applications
Highly electro‐responsive soft actuators have aroused immense attention due to their large
bending deformation, fast response time, and long durability under low driving voltage …
bending deformation, fast response time, and long durability under low driving voltage …
A review on intelligence of cellulose based materials
Z Sun, X Wang, H An, S Liang, N Li - Carbohydrate Polymers, 2024 - Elsevier
Cellulose based materials are widely used in various fields such as papermaking,
packaging, composite materials, textiles and clothing due to their diverse types …
packaging, composite materials, textiles and clothing due to their diverse types …
Ultralow Voltage High-Performance Nanocellulose-Based Electro-Ionic Actuators for Soft Robots
High-performance eco-friendly soft actuators showing large displacement, fast response,
and long-term operational capability require further development for next-generation …
and long-term operational capability require further development for next-generation …
Recent Advances in Ionic Liquid‐Based Hybrid Materials for Electroactive Soft Actuator Applications
Actuator systems are among the most noteworthy aspects of the rapidly expanding field of
smart and multifunctional materials, which is having a substantial impact on a number of …
smart and multifunctional materials, which is having a substantial impact on a number of …
Self-standing bacterial cellulose-reinforced poly (3, 4-ethylenedioxythiophene)/poly (4-styrenesulfonate) doped with graphene oxide composite electrodes for high …
Y Wu, Q Cui, R Qi, F Wang - Nanoscale Advances, 2024 - pubs.rsc.org
Flexible electrode films with good film-forming properties, large deformation ability, high
conductivity, and strong charge and discharge capabilities are crucial for ionic electroactive …
conductivity, and strong charge and discharge capabilities are crucial for ionic electroactive …
Highly Bendable Ionic Electro-responsive Artificial Muscles Using Microfibrillated Cellulose Fibers Combined with Polyvinyl Alcohol
C Deng, S Zheng, K Zhong, F Wang - Journal of Bionic Engineering, 2024 - Springer
For promising applications such as soft robotics, flexible haptic monitors, and active
biomedical devices, it is important to develop ultralow voltage, highly-performant artificial …
biomedical devices, it is important to develop ultralow voltage, highly-performant artificial …