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  4. Redox-active electrolyte-based printed ionologic devices
 
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2025
Journal Article
Title

Redox-active electrolyte-based printed ionologic devices

Abstract
Ionic devices, such as electrochemical capacitor diodes (CAPodes) and gate-controlled CAPodes with transistor-like gating characteristics (G-CAPodes), offer a novel approach to energy-efficient and nature-inspired logic computing. Their miniaturization and integration render them ideal for ion-transistor circuits, enabling the regulation and signaling of ions and biomolecules. Here, we report an asymmetric system to achieve a potential-driven ion pump for CAPode based on a redox-active Keggin-type electrolyte. This unidirectional capacity is achieved through asymmetric polarization between a plane metal and a porous carbon electrode, enabling selective redox reactions on the metal surface. The nanoporous carbon effectively balances the charge on the redox electrode, while redox couples control the working voltage range. Printed ionologic devices are demonstrated for logic gates, and an integrated NAND (NOT-AND) circuit was constructed using two CAPodes and one G-CAPode. This work proposes a concept for switchable iontronic devices, providing a deeper understanding and applicability of these devices.
Author(s)
Zhou, Hanfeng
Technische Universität Dresden  
Galek, Przemysław
Technische Universität Dresden  
Zheng, Tianle
Shanghai University
Li, Panlong
Technische Universität Dresden  
Zhou, Xiongjun
Kunming University of Science and Technology
Liu, Congcong
Leibniz-Institut für Festkörper- und Werkstoffforschung, Dresden  
Haase, Katherina
Center for Advancing Electronics Dresden
Kunigkeit, Jonas
Technische Universität Dresden  
Mannsfeld, Stefan C.B.
Center for Advancing Electronics Dresden
Qu, Jiang
Leibniz-Institut für Festkörper- und Werkstoffforschung, Dresden  
Li, Yuxi
Technische Universität Dresden  
Bahrawy, Ahmed A.
Technische Universität Dresden  
Xiong, Peixun
Technische Universität Dresden  
Mikhailova, Daria A.
Leibniz-Institut für Festkörper- und Werkstoffforschung, Dresden  
Grothe, Julia
Technische Universität Dresden  
Brunner, Eike
Technische Universität Dresden  
Kaskel, Stefan  
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Journal
Nature Communications  
Open Access
DOI
10.1038/s41467-025-59746-7
Additional link
Full text
Language
English
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
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