Improved ionic and mechanical properties of ion-exchange membrane with an ionic silica network for high-performance ionic polymer-metal composites

Authors
Lee, SangwoonChoi, Young EunLee, Jang YeolYang, TaewookJho, Jae YoungPark, Jong Hyuk
Issue Date
2023-06
Publisher
한국공업화학회
Citation
Journal of Industrial and Engineering Chemistry, v.122, pp.79 - 89
Abstract
Ion-exchange membranes considerably affect the actuation of ionic polymer-metal composites (IPMCs) through ion movement under an applied voltage. To enhance the performances of IPMCs, previous stud-ies have increased the ionic content of the ion-exchange membrane, thereby improving its ionic conduc-tivity and water uptake. Although this increased ionic content enhances IPMC displacement, the increased water uptake diminishes IPMC stiffness, resulting in decreased IPMC blocking force. Therefore, a new approach is needed to resolve the trade-off between displacement and force. Here, we reinforced the Nafion membrane by forming a sulfonated polysilsesquioxane structure inside. The incorporation of this ionic silica network increased the total ion content of the membrane and included silica as a mechanically reinforcing filler. The force of the IPMC can be enhanced despite increased water uptake by the membrane. Therefore, IPMCs were obtained with improvements in displacement and blocking force. Comparison of the IPMCs with commercial Nafion films revealed similar displacement and superior force, demonstrating their applicability. These findings represent a breakthrough in enhanc-ing the actuation of IPMCs while resolving the trade-off between displacement and force. (c) 2023 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
Keywords
TRANSPORT-PROPERTIES; ACTUATORS; IONOMERS; CATION; ELECTROLYTE; IR; Ion-exchange membrane; Ionic silica network; Ionic polymer-metal composites; Soft actuator; Electroactive polymer
ISSN
1226-086X
URI
https://pubs.kist.re.kr/handle/201004/113690
DOI
10.1016/j.jiec.2023.02.011
Appears in Collections:
KIST Article > 2023
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