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The maximum enhancement ration of the Ag-NP-decorated LEDs in EL is 4.3-fold by optimizing MgO electron blocking layer thickness.
In comparison with the bare UV LEDs, the maximum enhancement ration of the Ag nanoparticle-decorated LEDs in EL is sevenfold [28].
The maximum enhancement ration of the Ag nanoparticle-decorated LEDs in EL is 4.3-fold by optimizing MgO electron-blocking layer (EBL) thickness.
The maximum enhancement ration of the Ag-NP-decorated LEDs in electroluminescence (EL) is 4.3-fold by optimizing MgO electron-blocking layer thickness.
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Images were analyzed for maximum enhancement ratio, time at maximum enhancement ratio, slope of time enhancement ratio curves, and washout ratio 16, 20.
The inset shows the variation of UV enhancement ration with the MgO interlayer thickness.
b The injection current dependence of the EL enhancement ration for the LED.
A 4.3-fold EL enhancement is obtained under an injection current of 0.7 mA, and then, EL enhancement ration decreases rapidly with the increase of the injection current.
However, the EL enhancement ration of the device as a function of the injection current exhibits an opposite tendency in Fig. 3b.
The corresponding variation of the enhancement ration of ZnO UV emission with the MgO thickness is illustrated in the inset of Fig. 1d.
We found an enhancement of the CARS signal from thymine adsorbed on graphene oxide with maximum enhancement factor about 105.
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