Multi-Stimuli Responsive, Programmable, and Synergetic Biomimetic Actuator

24 Pages Posted: 2 Nov 2023

See all articles by Lian Chen

Lian Chen

Nanjing Forestry University

Kaihang Zhang

Zhejiang University

Gaigai Duan

Nanjing Forestry University

Xuxu Yang

Zhejiang University

Xianshuo Wei

Nanjing Forestry University

Feng Wang

Nanjing Forestry University

Chunmei Zhang

Suzhou University of Science & Technology

Xingyu Cao

Hainan University

Chunxin Ma

Hainan University

Shaohua Jiang

Nanjing Forestry University

Abstract

Hydrogel actuators with controllable deformation and excellent biocompatibility are widely used in soft robot, valve, drug delivery and lenses. However, the stimulation response performance of existing hydrogel actuators mostly focuses on a single active layer, which greatly affects its driving performance and service life. In this work, we integrate temperature-responsive hydrogel (Poly (N-isopropyl acrylamide), PNIPAM) and pH-responsive hydrogel (polyacrylic acid, PAAc) into one system to fabricate a dual active layer composite hydrogel actuator with high performance. Based on the PAAc hydrogels achieving contract or expand at different pH values, the obtained actuator exhibits admirable bidirectional bending characteristics. In addition, the anisotropic bamboo sheet endows the hydrogel actuator with programmable 3 D complex deformation. Benefitting from the synergy and different responsiveness between the two active layers, the hydrogel actuator not only has multiple response performance, but also greatly improves its deformation degree and response speed. More importantly, these promising properties of the actuator have broad application prospects in the development of pattern design and intelligent switch. This work proposes a promising strategy for the structural design of hydrogel actuators with excellent performance, and encourages more exploration of the application range of the actuator.

Keywords: multiple stimuli-responsive, synergistic performance, composite hydrogel actuator, bamboo sheet, complex deformation

Suggested Citation

Chen, Lian and Zhang, Kaihang and Duan, Gaigai and Yang, Xuxu and Wei, Xianshuo and Wang, Feng and Zhang, Chunmei and Cao, Xingyu and Ma, Chunxin and Jiang, Shaohua, Multi-Stimuli Responsive, Programmable, and Synergetic Biomimetic Actuator. Available at SSRN: https://ssrn.com/abstract=4618205 or http://dx.doi.org/10.2139/ssrn.4618205

Lian Chen

Nanjing Forestry University ( email )

159 Longpan Rd
Nanjing, 210037
China

Kaihang Zhang

Zhejiang University ( email )

38 Zheda Road
Hangzhou, 310058
China

Gaigai Duan (Contact Author)

Nanjing Forestry University ( email )

159 Longpan Rd
Nanjing, 210037
China

Xuxu Yang

Zhejiang University ( email )

38 Zheda Road
Hangzhou, 310058
China

Xianshuo Wei

Nanjing Forestry University ( email )

159 Longpan Rd
Nanjing, 210037
China

Feng Wang

Nanjing Forestry University ( email )

159 Longpan Rd
Nanjing, 210037
China

Chunmei Zhang

Suzhou University of Science & Technology ( email )

Xingyu Cao

Hainan University ( email )

No. 58, Renmin Avenue
570228, P.R.
Haikou, HainanProvince
China

Chunxin Ma

Hainan University ( email )

No. 58, Renmin Avenue
570228, P.R.
Haikou, HainanProvince
China

Shaohua Jiang

Nanjing Forestry University ( email )

159 Longpan Rd
Nanjing, 210037
China

Do you have a job opening that you would like to promote on SSRN?

Paper statistics

Downloads
29
Abstract Views
141
PlumX Metrics