High-contrast transparent projection display screen and manufacturing method thereof
A projection display and screen technology, applied in optics, instruments, projection devices, etc., can solve problems such as the popularization of unfavorable anti-ambient light display screens, increase the cost of display screens, etc., and achieve the effect of improving brightness, reducing reflection, and improving display effects.
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Embodiment 1
[0052] The structural schematic diagram of the projection display screen provided in this embodiment is shown in figure 2 , The projection display screen is composed of an imaging layer (3), a light absorbing layer (2) and an antireflection layer (1).
[0053] Wherein, the imaging layer is composed of imaging nanoparticles (6) with a plasmon resonance wavelength of 450nm, imaging nanoparticles (5) with a plasmon resonance wavelength of 560nm, and imaging nanoparticles with a plasmon resonance wavelength of 660nm (4) In the polymer film layer, the imaging nanoparticles are spherical silver nanoparticles.
[0054] The light-absorbing layer is a polymer film layer containing light-absorbing particles (9) with an absorption wavelength of 410 nm, light-absorbing particles (8) with an absorption wavelength of 505 nm, and light-absorbing particles (7) with an absorption wavelength of 610 nm, and the light-absorbing particles are in the shape of a sphere of silver nanoparticles.
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Embodiment 2
[0072] The projection display screen provided in this embodiment is composed of an imaging layer, a light absorbing layer and an antireflection layer.
[0073] Wherein, the imaging layer is a polymer film layer containing imaging nanoparticles with a plasmon resonance wavelength of 450nm, imaging nanoparticles with a plasmon resonance wavelength of 560nm, and imaging nanoparticles with a plasmon resonance wavelength of 660nm, The imaging nanoparticles are triangular prism shaped silver nanoparticles.
[0074] The light-absorbing layer is a polymer film layer containing light-absorbing particles with a light-absorbing wavelength of 415nm, light-absorbing particles with a light-absorbing wavelength of 500nm, and light-absorbing particles with a light-absorbing wavelength of 605nm, and the light-absorbing particles are spherical silver nanoparticles.
[0075] The anti-reflection layer is a three-layer transparent film composed of magnesium fluoride film-silicon dioxide film-magne...
Embodiment 3
[0087] The projection display screen provided in this embodiment is composed of an imaging layer, a light absorbing layer and an antireflection layer.
[0088] Wherein, the imaging layer is a polymer film layer containing imaging nanoparticles with a plasmon resonance wavelength of 450nm, imaging nanoparticles with a plasmon resonance wavelength of 560nm, and imaging nanoparticles with a plasmon resonance wavelength of 660nm, The imaging nanoparticles are silver-coated silica nanoparticles.
[0089] The light-absorbing layer is a polymer film layer containing light-absorbing particles with a plasmon resonance wavelength of 435nm, light-absorbing particles with a plasmon resonance wavelength of 550nm, and light-absorbing particles with a plasmon resonance wavelength of 650nm. Silicon coated silver nanoparticles.
[0090] The anti-reflection layer is a 4-layer transparent film composed of magnesium fluoride film-silicon dioxide film-magnesium oxide film-tin indium oxide film. ...
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