Claims
- 1. An electromagnetic radiation-absorptive material for blocking passage of radiation below a spectral cut off point, the material comprising:
- a. a carrier material having a refractive index; and
- b. dispersed therein, a silicon particulate material having substantially uniform particle size and exhibiting an absorption cross-section greater than 1 below the cut off point, the particulate material having a refractive index differing from that of the carrier and being present in sufficient density per unit of surface area to substantially block passage of radiation below the cut off point.
- 2. The material of claim 1 wherein the particulate material is spherical and exhibits an imaginary refractive-index component K which decreases substantially with wavelength.
- 3. The material of claim 2 wherein K is at least 0.5 at a wavelength of 0.4 .mu.m and is less than 0.005 .mu.m at a wavelength of 0.7 .mu.m.
- 4. The material of claim 2 wherein the density per unit of surface area varies inversely with K.
- 5. The material of claim 1 wherein the particle size is chosen to minimize scattering of visible radiation.
- 6. The material of claim 1 wherein the particulate material consists of uniformly sized spheres having a diameter that ranges from 0.005 .mu.m to 0.01 .mu.m.
- 7. The material of claim 1 wherein the particulate material consists of spheres of diameter less than 0.01 .mu.m.
- 8. The material of claim 1 wherein the density per unit of surface area of the particulate material is approximately 10.sup.-4 to 10.sup.-5 g/cm.sup.2.
- 9. The material of claim 1 wherein the silicon is crystalline silicon.
- 10. The material of claim 1 wherein the silicon is amorphous silicon.
- 11. The material of claim 1 wherein the silicon is hydrogenated amorphous silicon.
- 12. The material of claim 1 wherein the silicon is alloyed with germanium.
- 13. The material defined in claim 1 wherein the carrier and particulate material function cooperatively as an ink.
- 14. The material defined in claim 1 wherein the carrier and particulate material function cooperatively as a paint.
- 15. The material defined in claim 1 wherein the carrier and particulate material function cooperatively as a lotion.
- 16. The material defined in claim 1 wherein the carrier and particulate material function cooperatively as a gel.
- 17. The material defined in claim 1 wherein the carrier and particulate material function cooperatively as a cream.
- 18. The material defined in claim 1 wherein the carrier and particulate material function cooperatively as a color filter.
- 19. The material defined in claim 1 wherein the carrier and particulate material function cooperatively as a UV blocker.
- 20. The material defined in claim 1 wherein the carrier and particulate material function cooperatively as a surface coating or layer coated on a substrate.
- 21. The material defined in claim 1 wherein the carrier and particulate material form a package or container.
- 22. The material defined in claim 1 wherein the carrier and particulate material are laminated to a transparent glass or polymeric substrate.
RELATED APPLICATION
This application is a continuation-in-part of Ser. No. 08/144,249, filed Oct. 28, 1993.
US Referenced Citations (16)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0230303 |
Jul 1987 |
EPX |
2033418 |
May 1980 |
GBX |
2104528 |
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GBX |
Non-Patent Literature Citations (4)
Entry |
van de Hulst, H. C., "Light Scattering by Small Particles", Dover Publications, NY (1957), pp. 9, 269-281; QC 431 H8. (no month available). |
Abstract of Japanese Patent No. JP2173622. Jul. 1990. |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
144249 |
Oct 1993 |
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