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Towards single electron transistor-based photon detection with microplasma-enabled graphene quantum dots.

Pei-Chun YehGenki OhkatsuRyo ToyamaPhan Trong TueKostya Ken OstrikovYutaka MajimaWei-Hung Chiang
Published in: Nanotechnology (2021)
Single-electron transistors (SETs) represent a new generation of electronic devices with high charge sensitivity, high switching speed, and low power consumption. Here a simple and controlled fabrication of graphene quantum dot (GQD)-based SETs for photon detectors has been demonstrated. The plasma-synthesized GQDs exhibit stable photoluminescence and are successfully used as the Coulomb islands between heteroepitaxial spherical-gold/platinum (HS-Au/Pt) nanogap electrodes. The as-fabricated GQD-SETs enable photon detection with 410 nm excitation owing to the ability of GQDs to generate photoluminescence emission.
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