Matches in SemOpenAlex for { <https://semopenalex.org/work/W2775001084> ?p ?o ?g. }
- W2775001084 endingPage "12256" @default.
- W2775001084 startingPage "12247" @default.
- W2775001084 abstract "Extremely low energy consumption neuromorphic computing is required to achieve massively parallel information processing on par with the human brain. To achieve this goal, resistive memories based on materials with ionic transport and extremely low operating current are required. Extremely low operating current allows for low power operation by minimizing the program, erase, and read currents. However, materials currently used in resistive memories, such as defective HfOx, AlOx, TaOx, etc., cannot suppress electronic transport (i.e., leakage current) while allowing good ionic transport. Here, we show that 2D Ruddlesden-Popper phase hybrid lead bromide perovskite single crystals are promising materials for low operating current nanodevice applications because of their mixed electronic and ionic transport and ease of fabrication. Ionic transport in the exfoliated 2D perovskite layer is evident via the migration of bromide ions. Filaments with a diameter of approximately 20 nm are visualized, and resistive memories with extremely low program current down to 10 pA are achieved, a value at least 1 order of magnitude lower than conventional materials. The ionic migration and diffusion as an artificial synapse is realized in the 2D layered perovskites at the pA level, which can enable extremely low energy neuromorphic computing." @default.
- W2775001084 created "2017-12-22" @default.
- W2775001084 creator A5009113901 @default.
- W2775001084 creator A5019241329 @default.
- W2775001084 creator A5034104383 @default.
- W2775001084 creator A5054833719 @default.
- W2775001084 creator A5066075206 @default.
- W2775001084 creator A5086092552 @default.
- W2775001084 creator A5089568992 @default.
- W2775001084 date "2017-12-11" @default.
- W2775001084 modified "2023-10-15" @default.
- W2775001084 title "Extremely Low Operating Current Resistive Memory Based on Exfoliated 2D Perovskite Single Crystals for Neuromorphic Computing" @default.
- W2775001084 cites W1542981317 @default.
- W2775001084 cites W1866891130 @default.
- W2775001084 cites W1977042446 @default.
- W2775001084 cites W1977765713 @default.
- W2775001084 cites W2004823737 @default.
- W2775001084 cites W2006304022 @default.
- W2775001084 cites W2012391906 @default.
- W2775001084 cites W2013055927 @default.
- W2775001084 cites W2036899386 @default.
- W2775001084 cites W2037780000 @default.
- W2775001084 cites W2039272880 @default.
- W2775001084 cites W2048936516 @default.
- W2775001084 cites W2067242107 @default.
- W2775001084 cites W2070064014 @default.
- W2775001084 cites W2071947829 @default.
- W2775001084 cites W2081506514 @default.
- W2775001084 cites W2088211594 @default.
- W2775001084 cites W2112181056 @default.
- W2775001084 cites W2118980095 @default.
- W2775001084 cites W2119495176 @default.
- W2775001084 cites W2138913040 @default.
- W2775001084 cites W2163886718 @default.
- W2775001084 cites W2166433039 @default.
- W2775001084 cites W2215976296 @default.
- W2775001084 cites W2296420188 @default.
- W2775001084 cites W2297431508 @default.
- W2775001084 cites W2307089955 @default.
- W2775001084 cites W2320998926 @default.
- W2775001084 cites W2323835643 @default.
- W2775001084 cites W2326495756 @default.
- W2775001084 cites W2340687998 @default.
- W2775001084 cites W2345421161 @default.
- W2775001084 cites W2347532710 @default.
- W2775001084 cites W2349187797 @default.
- W2775001084 cites W2474894284 @default.
- W2775001084 cites W2488857026 @default.
- W2775001084 cites W2510358777 @default.
- W2775001084 cites W2525989524 @default.
- W2775001084 cites W2526646482 @default.
- W2775001084 cites W2536873010 @default.
- W2775001084 cites W2573896303 @default.
- W2775001084 cites W2579693087 @default.
- W2775001084 cites W2591029953 @default.
- W2775001084 cites W2597924173 @default.
- W2775001084 cites W2608323943 @default.
- W2775001084 cites W4247763225 @default.
- W2775001084 doi "https://doi.org/10.1021/acsnano.7b05726" @default.
- W2775001084 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29200259" @default.
- W2775001084 hasPublicationYear "2017" @default.
- W2775001084 type Work @default.
- W2775001084 sameAs 2775001084 @default.
- W2775001084 citedByCount "258" @default.
- W2775001084 countsByYear W27750010842018 @default.
- W2775001084 countsByYear W27750010842019 @default.
- W2775001084 countsByYear W27750010842020 @default.
- W2775001084 countsByYear W27750010842021 @default.
- W2775001084 countsByYear W27750010842022 @default.
- W2775001084 countsByYear W27750010842023 @default.
- W2775001084 crossrefType "journal-article" @default.
- W2775001084 hasAuthorship W2775001084A5009113901 @default.
- W2775001084 hasAuthorship W2775001084A5019241329 @default.
- W2775001084 hasAuthorship W2775001084A5034104383 @default.
- W2775001084 hasAuthorship W2775001084A5054833719 @default.
- W2775001084 hasAuthorship W2775001084A5066075206 @default.
- W2775001084 hasAuthorship W2775001084A5086092552 @default.
- W2775001084 hasAuthorship W2775001084A5089568992 @default.
- W2775001084 hasConcept C119857082 @default.
- W2775001084 hasConcept C145148216 @default.
- W2775001084 hasConcept C151927369 @default.
- W2775001084 hasConcept C154881586 @default.
- W2775001084 hasConcept C155011858 @default.
- W2775001084 hasConcept C161790260 @default.
- W2775001084 hasConcept C171250308 @default.
- W2775001084 hasConcept C178790620 @default.
- W2775001084 hasConcept C185592680 @default.
- W2775001084 hasConcept C192562407 @default.
- W2775001084 hasConcept C2182769 @default.
- W2775001084 hasConcept C2909374376 @default.
- W2775001084 hasConcept C31972630 @default.
- W2775001084 hasConcept C41008148 @default.
- W2775001084 hasConcept C49040817 @default.
- W2775001084 hasConcept C50644808 @default.
- W2775001084 hasConcept C55493867 @default.
- W2775001084 hasConcept C6899612 @default.
- W2775001084 hasConcept C8010536 @default.
- W2775001084 hasConceptScore W2775001084C119857082 @default.