Claims
- 1. A coated article comprising:
a glass substrate; a solar management layer arrangement including a nickel (Ni) inclusive layer sandwiched between first and second silicon nitride inclusive layers; and a diamond-like carbon (DLC) inclusive layer including silicon (Si) and tetrahedral amorphous carbon (ta-C), said DLC inclusive layer being provided on said substrate in a manner such that said solar management layer arrangement is located between said substrate and said DLC inclusive layer.
- 2. The coated article of claim 1, wherein at least about 40% of carbon-carbon (C—C) bonds in said DLC inclusive layer are sp3 carbon-carbon bonds, and wherein the coated article has an initial contact angle θ of at least about 55 degrees.
- 3. The coated article of claim 1, wherein said Ni inclusive layer is one of a Ni layer and a NiCr layer.
- 4. The coated article of claim 1, wherein said silicon nitride comprises Si3N4.
- 5. The coated article of claim 1, wherein said DLC inclusive layer is deposited via an ion beam deposition process in a manner such that said substrate is maintained at temperature(s) no greater than about 200 degrees C. during the process for depositing the DLC inclusive layer.
- 6. A coated article comprising:
a substrate; a solar management coating system provided on said substrate, said solar management coating system including at least one infrared (IR) reflecting layer, a first dielectric layer, and a protective substantially non-crystalline diamond-like carbon (DLC) inclusive layer; and wherein said first dielectric layer is located between said DLC inclusive layer and said IR reflecting layer.
- 7. The coated article of claim 6, wherein said DLC inclusive layer includes highly tetrahedral amorphous carbon, and wherein said first dielectric layer includes silicon (Si).
- 8. The coated article of claim 7, wherein at least about 40% of carbon-carbon (C—C) bonds in said DLC inclusive layer are sp3 carbon-carbon bonds.
- 9. The coated article of claim 6, wherein said DLC inclusive layer has an average density of at least about 2.4 gm/cm3, and wherein said coating system has an initial contact angle θ of at least about 55 degrees.
- 10. The coated article of claim 6, wherein said coating system further includes a second Si inclusive dielectric layer disposed between said IR reflecting layer and said substrate.
- 11. The coated article of claim 10, wherein each of said first and second dielectric layers comprise silicon nitride.
- 12. The coated article of claim 11, wherein said IR reflecting layer comprises at least one of Ni and NiCr.
- 13. The coated article of claim 6, wherein said coating system comprises first and second DLC inclusive layers located outwardly of said IR reflecting layer.
- 14. The coated article of claim 13, wherein each of said first and second DLC inclusive layers include highly tetrahedral amorphous carbon.
- 15. The coated article of claim 6, further comprising a fluoro-alkyl silane (FAS) compound inclusive layer located on said substrate such that said DLC inclusive layer is located between said FAS compound inclusive layer and said IR reflecting layer.
- 16. The coated article of claim 6, wherein said coating system has an initial contact angle θ of at least about 80 degrees, and said DLC inclusive layer has an average hardness of at least about 10 GPa.
- 17. The coated article of claim 6, wherein said coating system includes first and second DLC inclusive layers, said first DLC inclusive layer including silicon (Si) and being provided between said second DLC inclusive layer and said substrate; and
wherein said second DLC inclusive layer is deposited in a manner so that at least a portion of said second DLC inclusive layer has a greater hardness and higher density than said first DLC inclusive layer.
- 18. The coated article of claim 17, wherein said first DLC inclusive layer comprises more silicon (Si) than said second DLC inclusive layer.
- 19. The coated article of claim 18, wherein each of said first and second DLC inclusive layers include sp3 carbon-carbon bonds.
- 20. The coated article of claim 17, wherein said coating system further includes an FAS inclusive layer provided on said second DLC inclusive layer, so that said second DLC inclusive layer is located between said first DLC inclusive layer and said FAS inclusive layer.
- 21. The coated article of claim 6, wherein said coated article has an initial contact angle of at least about 100 degrees.
- 22. The coated article of claim 19, wherein said initial contact angle is at least about 110 degrees.
- 23. The coated article of claim 6, further comprising a fluoro-alkyl silane (FAS) compound inclusive layer located on said substrate such that said DLC inclusive layer is located between said FAS compound inclusive layer and said IR reflecting layer; and
wherein said FAS compound includes at least one of: CF3(CH2)2Si(OCH3)3; CF3(CF2)5(CH2)2Si(OCH2CH3)3; CF3(CH2)2SiCl3; CF3(CF2)5(CH2)2SiCl3; CF3(CF2)7(CH2)2Si(OCH3)3; CF3(CF2)5(CH2)2Si(OCH3)3; CF3(CF2)7(CH2)2SiCl3; CF3(CF2)7(CH2)2SiCH3Cl2; and CF3(CF2)7(CH2)2SiCH3(OCH3)2.
- 24. A coated article comprising:
a substrate; a first dielectric layer on said substrate; an IR reflecting layer on said substrate, wherein said dielectric layer is located between said IR reflecting layer and said substrate; a second dielectric layer on said substrate, wherein said IR reflecting layer is located between said first and second dielectric layers; a hydrophobic coating system including diamond-like carbon (DLC), wherein said IR reflecting layer is located between said hydrophobic coating system and said substrate; and wherein said hydrophobic coating system has an initial contact angle θ with a drop of water of at least about 55 degrees.
- 25. The coated article of claim 24, wherein said hydrophobic coating system further comprises at least one fluoro-alkyl silane (FAS) compound.
- 26. The coated article of claim 24, wherein said hydrophobic coating system includes first and second DLC inclusive layers of different hardnesses, wherein said second DLC inclusive layer is harder than said first DLC inclusive layer and said first DLC inclusive layer is located between said second DLC inclusive layer and said IR reflecting layer.
- 27. The coated article of claim 26, wherein said first DLC inclusive layer includes more Si than said second DLC inclusive layer.
- 28. The article of claim 26, wherein said initial contact angle is at least about 80 degrees.
- 29. A method of making a coated article, the method comprising the steps of:
providing a substrate; sputtering a solar management layer arrangement including at least one IR reflecting layer on the substrate; ion beam depositing a DLC inclusive layer on the substrate over the solar management layer arrangement in a manner such that the substrate and the IR reflecting layer are maintained at temperature(s) no greater than about 200 degrees C. during said ion beam depositing of the DLC inclusive layer.
- 30. The method of claim 29, wherein said depositing the DLC inclusive layer on the substrate over the solar management layer arrangement is performed in a manner such that the substrate and the IR reflecting layer are maintained at temperature(s) no greater than about 125 degrees C. during said depositing of the DLC inclusive layer.
- 31. The method of claim 30, wherein said depositing the DLC inclusive layer on the substrate over the solar management layer arrangement is performed in a manner such that the substrate and the IR reflecting layer are maintained at temperature(s) no greater than about 40 degrees C. during said depositing of the DLC inclusive layer.
- 32. The method of claim 29, further comprising:
using a first gas including silicon (Si) in said depositing step for depositing the DLC inclusive layer, wherein the DLC inclusive layer is a first DLC inclusive layer; and depositing a second DLC inclusive layer on the substrate over the first DLC inclusive layer using a second gas different than the first gas.
- 33. The method of claim 32, wherein the first gas comprises at least one of tetramethylsilane, trimethyldisilane, tetraethoxysilane, hexamethyldisiloxane, and dichlorodimethylsilane.
- 34. The method of claim 32, wherein the second gas comprises C2H2.
- 35. The method of claim 32, further comprising the step of depositing the first and second DLC inclusive layers in a manner such that the first DLC inclusive layer includes substantially more Si than the second DLC inclusive layer.
- 36. A coated article comprising:
a glass substrate; a solar management layer arrangement including an IR reflecting layer located between first and second silicon nitride inclusive layers; and a diamond-like carbon (DLC) inclusive layer including silicon (Si) and tetrahedral amorphous carbon (ta-C), said DLC inclusive layer being provided on said substrate in a manner such that said solar management layer arrangement is located between said substrate and said DLC inclusive layer.
- 37. The coated article of claim 36, wherein said IR reflecting layer comprises silver (Ag).
- 38. The coated article of claim 36, further comprising a first NiCr inclusive layer located between said IR reflecting layer and said first silicon nitride inclusive layer, and a second NiCr inclusive layer located between said IR reflecting layer and said second silicon nitride inclusive layer.
Parent Case Info
[0001] This is a continuation-in-part (CIP) U.S. patent application Ser. No. 09/______, filed Oct. 30, 2000, entitled “Low-E Coating System Including Protective DLC” (atty. ref. 3691-78), and a CIP of U.S. patent application Ser. No. 09/303,548, filed May 3, 1999, and a continuation-in-part (CIP) of U.S. patent application Ser. No. 09/442,805, filed Nov. 18, 1999, and a continuation-in-part (CIP) of U.S. patent application Ser. No. 09/583,862 filed Jun. 1, 2000, entitled “Hydrophobic Coating Including DLC on Substrate”, and a CIP of U.S. patent application Ser. No. 09/617,815, filed Jul. 17, 2000, entitled “Hydrophobic Coating with DLC & FAS on Substrate”, the disclosures of which are all hereby incorporated herein by reference.
Divisions (1)
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Continuation in Parts (5)
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