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General Design Concepts for CAPodes as Ionologic Devices
Authors:Hanfeng Zhou  Panlong Li  Dr. En Zhang  Jonas Kunigkeit  Xiongjun Zhou  Katherina Haase  Dr. Maria Rita Ortega Vega  Shuwen Wang  Xiaosa Xu  Dr. Julia Grothe  Prof. Stefan C. B. Mannsfeld  Prof. Eike Brunner  Prof. Katsumi Kaneko  Prof. Stefan Kaskel
Affiliation:1. Inorganic Chemistry I, Technische Universität Dresden, Bergstrasse 66, 01069 Dresden, Germany;2. Bioanalytical Chemistry, Technische Universität Dresden, Bergstrasse 66, 01069 Dresden, Germany;3. Mechanical and Electrical Engineering, Kunming University of Science and Technology, Jingming South 727, Kunming, 650093 China;4. Faculty of Electrical and Computer Engineering & Center for Advancing Electronics Dresden (cfaed), Technische Universität Dresden, Helmholtzstraße 18, 01062 Dresden, Germany;5. Research Initiative for Supra-Materials, Shinshu University, 4-17-1, Wakasato, 390-8621 Nagano-City, Japan
Abstract:Capacitive analogues of semiconductor diodes (CAPodes) present a new avenue for energy-efficient and nature-inspired next-generation computing devices. Here, we disclose the generalized concept for bias-direction-adjustable n- and p-CAPodes based on selective ion sieving. Controllable-unidirectional ion flux is realized by blocking electrolyte ions from entering sub-nanometer pores. The resulting CAPodes exhibit charge-storage characteristics with a high rectification ratio (96.29 %). The enhancement of capacitance is attributed to the high surface area and porosity of an omnisorbing carbon as counter electrode. Furthermore, we demonstrate the use of an integrated device in a logic gate circuit architecture to implement logic operations (‘OR’, ‘AND’). This work demonstrates CAPodes as a generalized concept to achieve p-n and n-p analogue junctions based on selective ion electrosorption, provides a comprehensive understanding and highlights applications of ion-based diodes in ionologic architectures.
Keywords:Capacitive Analogues of Semiconductor Diodes  Ionologic Devices.  Porous Carbon  Supercapacitors
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