研究目的
Investigating the effects of size and localized defect states on photogenerated carrier recombination dynamics and the performance of graphene quantum dots (GQDs) based Si-compatible near-UV heterojunction photodetectors.
研究成果
The study demonstrates that the size and localized surface states of GQDs significantly influence their optical properties and carrier dynamics, which in turn affect the performance of photodetector devices. The device fabricated using ~6.0 nm diameter GQDs exhibited the highest peak responsivity of 3.5 A/W at 380 nm, showing superior performance in the near UV region. This work highlights the potential of colloidal quantum dots based optical devices integrated on a Si platform.
研究不足
The study is limited to the synthesis and characterization of GQDs of varying sizes and their application in photodetector devices. The performance of the devices is compared with existing literature, but the scalability and long-term stability of the devices are not discussed.
1:Experimental Design and Method Selection:
GQDs were synthesized by oxidative cutting of reduced graphene oxide (rGO) followed by hydrothermal reduction and gradient centrifugation at different speeds.
2:Sample Selection and Data Sources:
Different sized GQDs were obtained by gradient centrifugation of the as-prepared solution using different centrifugation speeds varying from 6000 to 14000 rpm.
3:List of Experimental Equipment and Materials:
High resolution transmission electron microscopy (JEOL, model JEM-2100F), atomic force microscopy (Agilent Technology, 5500 AFM instrument), UV-visible absorption spectra (Avaspec-3648), photoluminescence measurements (He-Cd gas laser, TRIAX-320 monochromator, Hamamatsu R928 PMT detector), Raman spectroscopy (Argon ion laser, Jobin Yvon Horiba T64000 spectrometer), photo-generated carrier lifetime measurement (Edinburgh LifeSpec-II fluorescence lifetime spectrometer).
4:Experimental Procedures and Operational Workflow:
GQDs were spin coated on n-type Silicon (100) substrates, and devices were fabricated with aluminum and gold as top and bottom electrodes.
5:Data Analysis Methods:
Time resolved PL spectroscopy was carried out to measure the lifetime of photo-excited carriers, and the curves were fitted with bi-exponential decay functions.
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