OPTICAL DIFFUSER TO IMPROVE PHOTON CAPTURE FOR IMPROVED PHOTOCHEMICAL REACTIONS
Optical diffusers and methods of manufacturing thereof are described herein. In some aspects, a method of manufacturing an optical diffuser can include forming lenslets on glass or plastic to remove any sharp scattering surfaces to form an optical diffuser; coupling a container with said optical diffuser in which said container is configured to hold a chemical, wherein said lenslets transmit over a percentage of light through said optical diffuser and said percentage of light is over 80%.
1 . A method of manufacturing an optical diffuser to improve photon capture for improved photochemical reactions, comprising:
forming lenslets on glass or plastic to remove any sharp scattering surfaces to form an optical diffuser;
coupling a container with said optical diffuser wherein said container is configured to hold a chemical;
wherein said lenslets transmit over a percentage of light through said optical diffuser, and wherein said percentage of light is over 80%.
2 . The method of manufacturing an optical diffuser to improve photon capture for improved photochemical reactions of claim 1 , further comprising:
utilizing an acid to form said lenslets on said glass or said plastic to remove any of said sharp scattering surfaces.
3 . The method of manufacturing an optical diffuser to improve photon capture for improved photochemical reactions of claim 1 , further comprising:
utilizing a solvent to form said lenslets on said plastic to remove any of said sharp scattering surfaces;
4 . The method of manufacturing an optical diffuser to improve photon capture for improved photochemical reactions of claim 1 , further comprising:
utilizing a laser to form said lenslets on said glass or said plastic to form micro-optics on one or both surfaces of said glass or said plastic, wherein said laser operates at the pico or femto second time frame.
5 . The method of manufacturing an optical diffuser to improve photon capture for improved photochemical reactions of claim 1 , further comprising:
utilizing lithography to form said lenslets on said glass or said plastic to form micro-optics on one or both surfaces.