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Hybrid graphene quantum dot architectures can greatly improve responsivity, but at the cost of response speed.
A further and important influence on retention may be the specific adaptations that were made to the original program to improve responsivity.
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The electrically conductive films of eGNRs were employed in gas sensors that showed improved responsivity to low molecular weight alcohols, compared to similar sensors based on widely studied graphene materials, such as rGO and CVD graphene42, 43.
Thin films of eGNRs were effectively utilized in gas sensors that showed improved responsivity to low molecular weight alcohols compared to similar sensors based on benchmark graphitic materials, such as graphene and reduced graphene oxide (rGO).
Improved responsivity and lower dark current are predicted for the optimized InGaAs/InP device over previously reported devices with indium aluminum arsenide emitter/collector layers.
A photocurrent enhancement of 125% and improved responsivity of 364 μA/W are obtained under the pyro-potential upon 690 nm light illumination, whereas reversed responsivity of −155 μA/W is obtained under the thermo-potential upon 365 nm light illumination.
Moreover, the strongly improved responsivity recently demonstrated in GaAsSb-capped InAs/GaAs QD infrared photodetectors (QDIPs) [8] could be spectrally tuned by controlling the N content in the quaternary CL.
These films were employed in gas sensors and an electronic nose system, which showed improved responsivities to low molecular weight alcohols compared to similar sensors based on benchmark graphitic materials, such as graphene and reduced graphene oxide, and a reliable analyte recognition.
The only reason to use these simpler versions is for the slightly smaller jar file sizes, which can improve the responsivity of applets.
Gold nanoparticles (AuNPs) have been deposited on n-type Ge photodetectors to improve the responsivity.
To improve the responsivity of QDash-QCD, we may improve the doping density as what we did in ref. [22].
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