| Literature DB >> 35215581 |
Mohammad Luqman1, Hamid M Shaikh2, Arfat Anis2, Saeed M Al-Zahrani2, Mohammad Asif Alam3.
Abstract
Herein, we present new approaches for developing sulfonated polyether ether ketone (SPEEK) and polyaniline-based (PANI) actuator formed by film-casting and chemical reduction of Pt electrodes. We have thoroughly studied the synthesis of SPEEK and characterized it by different analytical techniques. The ion-exchange capacity (IEC) and proton conductivity of SPEEK-PANI polymer membrane were calculated to be 1.98 mmol g-1 and 1.97 × 10-3 S cm-1, respectively. To develop an IPMC actuator, SPEEK was combined with PANI through in-situ polymerization method. SEM and XRD were used to check the morphology of the given SPEEK-PANI-Pt membrane. In addition, FT-IR and EDX techniques confirmed the molecular structure and chemical conformation of SPEEK-PANI polymer membrane. Pt electrode layers homogeneously dispersed on the IPMC membrane surface, which was demonstrated by smooth SEM micrographs. The actuation functioning, including the high bending deflection, proton conductivity, current density and IEC of IPMC actuator based on SPEEK-PANI-Pt, was obtained owing to its strong electrochemical and electromechanical characteristics. Synergistic combinations of SPEEK and PANI produced membrane that are flexible, mechanically strong and robust. The developed materials have immense capability as actuators for various applications including in biomimetics and robotics.Entities:
Keywords: actuator; biomimetic; composite; ionic polymer-metal composite (IPMC); platinum-coated; proton exchange membrane; robotics; sulfonated polyether ether ketone (SPEEK) polyaniline (PANI) membrane
Year: 2022 PMID: 35215581 PMCID: PMC8879763 DOI: 10.3390/polym14040668
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329
Figure 1Shows the schematic diagram for actuation and control of SPEEK-PANI-Pt ionic polymer actuator.
Figure 2FTIR spectrum of (a) SPEEK (b) SPEEK-PANI-Pt membrane.
Figure 3Powder x-ray diffraction pattern of SPEEK-PANI-Pt membrane.
Figure 4SEM micrographs of SPEEK-PANI-Pt membranes at different magnifications (top) 5000× (down) 15,000×.
Figure 5EDX spectrum of SPEEK-PANI-Pt membrane.
Figure 6Successive bi-directional deflection behavior of SPEEK-PANI-Pt ionic polymer film actuator.
Experimental deflection data of SPEEK-PANI-Pt ionic polymer actuator.
| Tip Deflection (mm) | |||||
|---|---|---|---|---|---|
| Voltage | 0 V | 0.5V | 1.0V | 1.5V | 2.0V |
| Trial 1 | 0 | 8.0 | 12.0 | 18.0 | 21.0 |
| Trial 2 | 0 | 7.3 | 12.8 | 17.8 | 21.9 |
| Trial 3 | 0 | 7.5 | 12.5 | 17.5 | 21.5 |
| Trial 4 | 0 | 7.6 | 12.8 | 17.9 | 21.2 |
| Trial 5 | 0 | 7.9 | 12.2 | 17.8 | 21.7 |
| Trial 6 | 0 | 8.0 | 12.4 | 18.1 | 21.8 |
| Trial 7 | 0 | 7.8 | 12.1 | 17.9 | 21.5 |
| Trial 8 | 0 | 7.7 | 12.3 | 18.1 | 21.8 |
| Trial 9 | 0 | 7.8 | 12.1 | 17.8 | 21.7 |
| Trial 10 | 0 | 7.9 | 12.4 | 18.0 | 21.9 |
Figure 7Experimental performance of deflection and voltage for developed SPEEK-PANI-Pt ionic polymer film actuator.
Force data of SPEEK-PANI-Pt ionic polymer bending actuator.
| Voltage | F1 | F2 | F3 | F4 | F5 | F6 | F7 | F8 | F9 | F10 | Average Force Value |
|---|---|---|---|---|---|---|---|---|---|---|---|
| 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 |
| 0.5 | 0.052 | 0.048 | 0.052 | 0.051 | 0.049 | 0.05 | 0.051 | 0.049 | 0.048 | 0.050 | 0.05 |
| 1.0 | 0.106 | 0.108 | 0.109 | 0.11 | 0.107 | 0.109 | 0.106 | 0.107 | 0.108 | 0.110 | 0.108 |
| 1.5 | 0.203 | 0.208 | 0.21 | 0.209 | 0.205 | 0.207 | 0.204 | 0.205 | 0.207 | 0.206 | 0.2064 |
| 2.0 | 0.305 | 0.307 | 0.309 | 0.308 | 0.306 | 0.308 | 0.309 | 0.307 | 0.308 | 0.310 | 0.3077 |
| Mean | 0.13442 | ||||||||||
| Standard Deviation | 0.110544623 | ||||||||||
| Repeatability | 88.94% | ||||||||||
Figure 8Force behavior of SPEEK-PANI-Pt ionic polymer bending actuator.
Figure 9Normal distribution behavior of SPEEK-PANI-Pt ionic polymer bending actuator.