| Literature DB >> 35454527 |
Xiaoming Tang1, Ziyi Zhou1, Yuehang Jiang1, Qian Wang1, Qi Sun1, Lei Zu1, Xing Gao1,2, Huiqin Lian1, Minhua Cao3, Xiuguo Cui1.
Abstract
Ionic electroactive polymer-based actuators have attracted much attention due to their low potential stimuli. In this work, MXene-Nafion composite actuators were fabricated, and the actuation performances were tested. The morphology of the as-made MXene-Nafion composite showed that the composite membrane was homogeneous, with an MXene doping level up to 5 wt%. In addition, the results of blocked force, response speed, and durability demonstrated that the actuation behavior of the composite-based actuator was enhanced due to the efficient dispersion of the two-dimensional nanofiller MXene. In addition, the blocking force of the composite actuator with a doping level of 0.5 wt% was about 6 times that of the pure Nafion without back-relaxation and durability degradation during the testing period.Entities:
Keywords: MXene; actuation; back-relaxation; carbon nanotubes; ionic electroactive
Year: 2022 PMID: 35454527 PMCID: PMC9030086 DOI: 10.3390/ma15082833
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.748
Figure 1Schematic diagram of IPMC structure and actuation.
Figure 2(a) SEM image of Ti3AlC2, (b) TEM image of MXene flake, (c) HR-TEM image of MXene, (d) SEM image of MXene film, (e) EDS spectrum, and (f–h) distribution diagram of C, Ti and Al elements corresponding to (d).
Figure 3Raman spectra of Ti3C2Tx and Ti3AlC2.
Figure 4SEM images of (a) pure Nafion; (b) 2% MXene–Nafion composite film; (c) electrode horizontal surface of IEP; (d) neat Nafion film with CNT electrodes.
Figure 5(a) XRD patterns of Ti3AlC2, neat Nafion, MXene–Nafion films; (b) Raman spectra of Nafion and MXene–Nafion film; and (c) Raman spectra of MXene and MXene–Nafion film.
Physical properties of Nafion and Nafion−MXene composite membranes.
| Film | Water Uptake (%) | Swelling | IEC | |
|---|---|---|---|---|
| Pure Nafion | 34.7 | 15.0 | 0.918 | 0.027 |
| 0.5% MXene | 44.5 | 17.5 | 0.947 | 0.150 |
| 1% MXene | 51.9 | 20.4 | 0.930 | 0.160 |
| 2% MXene | 52.1 | 18.3 | 0.924 | 0.252 |
| 5% MXene | 37.0 | 11.8 | 0.899 | 0.030 |
Figure 6(a) Blocking force of MXene–Nafion actuators with period of 20 s. 1. pure Nafion; 2. 0.5% MXene–Nafion. (b) Blocking force of 0.5% MXene–Nafion actuators under ±2 V AC square wave. (c) Blocking force of 0.5% MXene–Nafion actuators with period of 20 s.
Figure 7Variation of the blocking force with time of IEP films under 3V DC field.
Figure 8(a) Variation of the blocking force with time and the first-order plot (insert) of Nafion under 2.5 V field with period of 20 s; (b) durability of Nafion and 0.5% MXene sandwich film.