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We present a novel approach to real-time structured light range scanning.
It has absorption spectrometry in the visible light range of 400 550 nm.
Meanwhile, the thin films possessed a low UV transmittance performance (200 400 nm), accompanied with low transmittance in blue light range (400 500 nm) while maintained a high light transmittance in visible light range (400 800 nm).
Outside levels of light range from about 10,000 to 100,000 lux: enough to regulate your circadian clock in just 30 minutes of exposure.
The optical reflection edge was obviously shifted to the visible light range with the transition metal additives.
An abrupt and obvious absorption spectra shift (around 132 nm) in the visible light range (400 650 nm) is observed.
The UV vis diffuse reflection spectra showed extended absorption within the visible light range compared with pure Bi2MoO6.
Both single modification and co-modification extended the light absorption of TiO2 NTAs to the visible light range.
The average transmission of the p-type SnO2 Zn films was above 80% in the visible light range.
Results of optical studies showed that all deposited thin films were well transparent in a visible light range.
Maximum optical contrast of up to 15% and a visible light range averaged one of 10% was observed.
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CEO of Professional Science Editing for Scientists @ prosciediting.com