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- W4213426562 abstract "This article proposes a novel design approach for the fabrication of lateral Schottky barrier diodes (SBD) using a wide bandgap oxide semiconductor on silicon. Structural and electrical properties of the fabricated device are reported and compared with published data. The metal–insulator–semiconductor (MIS) Schottky barrier is realized between the room‐temperature sputtered Al/a‐Ga 2 O 3 on single‐crystal <100> boron‐doped silicon substrate (p‐type). The device fabrication process is implemented entirely at room temperature. The proposed trench diode yields an ideality factor of 1.65 and a rectification ratio of ≈1 × 10 6 at ±5.0 V. The extracted specific ON resistance is 78 mΩ cm 2 , and the breakdown voltage is not observed for 180 V for a 200‐nm‐thin layer of a‐Ga 2 O 3 . Due to such low‐temperature process, simple fabrication steps, and notably high Baliga's figure‐of‐merit (BFOM), the proposed diode is, therefore, promising for power electronics applications." @default.
- W4213426562 created "2022-02-25" @default.
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- W4213426562 date "2022-03-04" @default.
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- W4213426562 title "Room‐Temperature Processed Lateral Trench‐Metal–Insulator–Semiconductor Schottky Barrier Diodes with Amorphous Gallium Oxide (a‐Ga <sub>2</sub> O <sub>3</sub> ) Thin Films on Single‐Crystal Silicon <100>" @default.
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- W4213426562 doi "https://doi.org/10.1002/pssa.202200054" @default.
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