Additive‐Free Ti <sub>3</sub> C <sub>2</sub> T <sub>x</sub> MXene Actuator with Large Deformation, Programmability, and High‐Humidity Stability via Precise Interlayer Spacing Control Engineering
Haowen Zheng(Harbin Institute of Technology), Xiaodong He(Harbin Institute of Technology), Qingyu Peng(Harbin Institute of Technology), Fuhua Xue(Harbin Institute of Technology), Liangliang Xu(Harbin Institute of Technology), Zonglin Liu(Harbin Institute of Technology), Cong Zhang(Harbin Medical University), Teng Fei(Harbin Institute of Technology), Xu Zhao(Harbin Institute of Technology), Yiming Hu(Harbin Institute of Technology), Huanxin Lian(Harbin Institute of Technology), He Chen(Harbin Institute of Technology), Yunxiang Chen(Harbin Institute of Technology)
Cited by 3
Related Papers
Carbon nanotubes enhance flexible MXene films for high-rate supercapacitors
|Journal of Materials Science|2019|146
Bio‐Inspired Stimuli‐Responsive Ti<sub>3</sub>C<sub>2</sub>T<sub>x</sub>/PNIPAM Anisotropic Hydrogels for High‐Performance Actuators
|Advanced Functional Materials|2023|110
Bioinspired multi-stimulus responsive MXene-based soft actuator with self-sensing function and various biomimetic locomotion
|Chemical Engineering Journal|2023|92