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#monolayer — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #monolayer, aggregated by home.social.

  1. Synthesis of Goldene: Single-Atom Layer Gold With Interesting Properties - The synthesis of single-atom layer versions of a range of atoms is currently all t... - hackaday.com/2024/04/25/synthe #monolayer #graphene #science #goldene

  2. "Here we report an integrated 32 × 32 #vector#matrix multiplier with 1,024 floating-gate field-effect #transistors that use #monolayer #molybdenum disulfide as the channel material. In our wafer-scale fabrication process, we achieve a high yield and low device-to-device variability, which are prerequisites for practical applications"

    nature.com/articles/s41928-023

  3. "Here we report an integrated 32 × 32 #vector#matrix multiplier with 1,024 floating-gate field-effect #transistors that use #monolayer #molybdenum disulfide as the channel material. In our wafer-scale fabrication process, we achieve a high yield and low device-to-device variability, which are prerequisites for practical applications"

    nature.com/articles/s41928-023

  4. "Here we report an integrated 32 × 32 #vector#matrix multiplier with 1,024 floating-gate field-effect #transistors that use #monolayer #molybdenum disulfide as the channel material. In our wafer-scale fabrication process, we achieve a high yield and low device-to-device variability, which are prerequisites for practical applications"

    nature.com/articles/s41928-023

  5. "Here we report an integrated 32 × 32 #vector#matrix multiplier with 1,024 floating-gate field-effect #transistors that use #monolayer #molybdenum disulfide as the channel material. In our wafer-scale fabrication process, we achieve a high yield and low device-to-device variability, which are prerequisites for practical applications"

    nature.com/articles/s41928-023

  6. "Here we report an integrated 32 × 32 #vector#matrix multiplier with 1,024 floating-gate field-effect #transistors that use #monolayer #molybdenum disulfide as the channel material. In our wafer-scale fabrication process, we achieve a high yield and low device-to-device variability, which are prerequisites for practical applications"

    nature.com/articles/s41928-023