Polyelectrolyte Complexation Approach to Devise PEDOT:PSS-Based Moldable, Self-Healable, and Ultra-Stretchable Solid Electrolytes for Underwater Electronics

被引:0
作者
Anand, Shrinkhala [2 ]
Tewary, Arpan [2 ]
Upadhyay, Chandan [2 ]
Sinha, Akhoury Sudhir Kumar [3 ]
Ojha, Umaprasana [1 ,2 ]
机构
[1] Indian Inst Technol Bhubaneswar, Sch Basic Sci, Jatni 752050, Odisha, India
[2] Rajiv Gandhi Inst Petr Technol, Dept Sci & Humanities, Jais 229304, Uttar Pradesh, India
[3] Rajiv Gandhi Inst Petr Technol, Dept Chem Engn, Jais 229304, Uttar Pradesh, India
关键词
conductive ink; polyelectrolyte complex; flexibleelectronics; strain sensor; PEDOT:PSS; self-healing;
D O I
10.1021/acsaelm.4c01278
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
PEDOT:PSS-based systems possessing effective optoelectronic behavior are promising for metal particle-free flexible electronics applications. However, these systems currently suffer from low stretchability, mechanical resilience, and performance in aqueous media. In this article, polyelectrolyte complexation between polyacryloyl hydrazide triflate (PAHT) and polystyrenesulfonate (PSS) is utilized to devise conducting ink with tunable viscosity at high PEDOT loading for fabricating stretchable, self-healable, and conductive solid electrolytes for flexible electronics applications. The possible ionic linkages (CONHNH3+---SO3 and SO3---CS+) between the polymeric segments enabled film integrity in various organic and aqueous media and imparted effective tensile strength (0.10 MPa) and stretchability (similar to 1120%), while maintaining effective ionic conductivity (0.18 S/cm). The film displayed an effective Delta R/R-0 value of similar to 26.2 at 600% stretching. As a proof of concept, the ability of these solid electrolytes toward strain-sensing application was studied. The system was able to display repeatable change in Delta R/R-0 values in response to various bodily movements under submersible conditions and adequate Gauge factor values of 4.4 and 0.20 under environmental and underwater conditions supporting its viability toward strain-sensing applications.
引用
收藏
页码:7380 / 7391
页数:12
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