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From the photonic application viewpoint, Al2O3 is an interesting host material for optical communication.
Silicon has not been considered a proper material for optical device applications owing to its indirect band structure.
ZnO is commonly used as a material for optical device applications in the UV range owing to its wide direct bandgap (3.37 eV) [7 10].
Nanostructured porous Si (PSi) has emerged as a promising material for optical biosensing applications due to its large internal surface area and tunable optical properties[1 3].
The conductivity and internal reflection properties for amorphous SiO2 also make it the choice of material for optical fibers, which constitute an important element in today's telecommunication technologies.
We believe that the designed and manufactured absorber might become a promising material for optical devices where high broadband absorption and flexibility are required.
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These polymers have potentials as materials for optical waveguides.
Semiconductor nanocrystals with large nonlinearity are also known to be attractive candidate materials for optical limiting.
The strong absorption makes 3D-NG promising materials for optical applications.
Options for windows and lenses materials for optical diagnostics are described.
The obvious enhancement in luminescence makes these compounds potential materials for optical use.
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