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It was noted that a maximum transmittance of 99.9% was achieved at the wavelength of 550 nm.
In addition, by controlling the hydrogen partial pressure, we obtained highly conductive AZO films with a minimum resistivity of 8 × 10− 4 Ω·cm and a maximum transmittance of 83.2% at a hydrogen partial pressure of 1 mTorr.
High-quality transparent conductive films with sheet resistance of 4.4 Ω/sq and maximum transmittance of 91% at 500 nm wavelength were obtained with an annealing temperature of 200 °C.
The transmittance of the top Ni layer was modified by adjusting the O2 flow into the sputtering chamber and it showed the maximum transmittance of 90.14% for broad wavelength range of 400 1100 nm.
The maximum transmittance of coatings reached as high as 95.3% at the wavelength of 630 nm, whereas the water contact angle was 153° with sliding angle ⩽5° by applying of the A2/B/MSN2 coating.
In agreement with the simulations, the deposited TiOx/Au/AZO electrodes showed a maximum transmittance of 0.88 at 550 nm (including the substrate) and average transmittance in the visible wavelength range of > 0.80, combined with a sheet resistance of 14 Ω/square.
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The results show that each filter is sensitive to a specific spectral band, with FWHM < 20 nm, and a ratio of maximum transmittance to background noise greater than 70/20.
We adjusted the maximum transmittance to be located at the wavelength of 565 nm, the same wavelength where there is a maximum in Fig. 6(a).
The dual-layer AR film shows a good transmittance simultaneously in the wavelengths of 351 and 1053 nm, while the maximum transmittance for tri-layer appeared at 527 and 1053 nm, nearly 100%.
By tailoring the thickness of the dielectric layer and the ITO layer, the dielectric/Ag/ITO structure yielded a transmittance of 0.97, which surpasses the maximum transmittance (0.91) of a single ITO film.
The maximum transmittance modulation of the device could attain 45.3% at 750 nm, which resulted in a corresponding coloration efficiency of 336.8 cm2/C.
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