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- W3080821069 abstract "Abstract Large size of capacitors is the main hurdle in miniaturization of current electronic devices. Herein, a scalable solution‐based layer‐by‐layer engineering of metallic and high‐κ dielectric nanosheets into multilayer nanosheet capacitors (MNCs) with overall thickness of ≈20 nm is presented. The MNCs are built through neat tiling of 2D metallic Ru 0.95 O 2 0.2− and high‐κ dielectric Ca 2 NaNb 4 O 13 − nanosheets via the Langmuir–Blodgett (LB) approach at room temperature which is verified by cross‐sectional high‐resolution transmission electron microscopy (HRTEM). The resultant MNCs demonstrate a high capacitance of 40–52 µF cm −2 and low leakage currents down to 10 −5 –10 −6 A cm −2 . Such MNCs also possess complimentary in situ robust dielectric properties under high‐temperature measurements up to 250 °C. Based on capacitance normalized by the thickness, the developed MNC outperforms state‐of‐the‐art multilayer ceramic capacitors (MLCC, ≈22 µF cm −2 /5 × 10 4 nm) present in the market. The strategy is effective due to the advantages of facile, economical, and ambient temperature solution assembly." @default.
- W3080821069 created "2020-09-01" @default.
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- W3080821069 date "2020-08-26" @default.
- W3080821069 modified "2023-10-18" @default.
- W3080821069 title "Scalable Design of Two‐Dimensional Oxide Nanosheets for Construction of Ultrathin Multilayer Nanocapacitor" @default.
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- W3080821069 doi "https://doi.org/10.1002/smll.202003485" @default.
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