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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
Institution: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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