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- W2893877928 abstract "Abstract One of the major challenges in the field of organic electronics is miniaturization and integration of electrical components. Such miniaturization, however, has been restricted strictly so far because of the difficulty in fabricating minute electrodes on organic layers and their patterning. The conventional metal electrode has been fabricated generally using vacuum evaporation with a shadow mask, and the resolution of the shadow mask limits the electrode size. In this study, a minute organic memory cell fabricated by laser scanning and maskless Mg‐vapor deposition is reported. This fabrication method is based on selective metal‐vapor deposition on photochromic diarylethene (DAE). To obtain electrical bistability for memory operation, a DAE–Cu composite film, prepared by Cu deposition onto the DAE surface at a high substrate temperature, is adopted. The optimum condition to achieve the compatibility of selective Mg‐vapor deposition and electrical bistability is revealed here. A larger ON–OFF ratio (OOR) in electrical bistability is obtained in a smaller cell and the 10 micron sized memory cell with a large OOR of 10 5 is demonstrated." @default.
- W2893877928 created "2018-10-05" @default.
- W2893877928 creator A5062836873 @default.
- W2893877928 creator A5070999406 @default.
- W2893877928 date "2018-09-25" @default.
- W2893877928 modified "2023-10-18" @default.
- W2893877928 title "Minute Organic Memory Fabricated by Laser Scanning and Selective Metal-Vapor Deposition of a Diarylethene-Cu Composite Film" @default.
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- W2893877928 doi "https://doi.org/10.1002/aelm.201800491" @default.
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