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Midwood
Kim S. Midwood, London GB
| Patent application number | Description | Published |
|---|---|---|
| 20110093082 | ENHANCED BONDING LAYERS ON TITANIUM MATERIALS - The present invention provides a dense-coverage, adherent phosphorous-based coating on the native oxide surface of a material. Disclosed phosphorous-based coatings include phosphate and organo-phosphonate coatings. The present invention also provides further derivatization of the phosphorous-based coatings to yield dense surface coverage of chemically reactive coatings and osetoblast adhesion-promoting and proliferation-promoting coatings on the native oxide surface of a titanium material. | 04-21-2011 |
Kim S. Midwood, Princeton, NJ US
| Patent application number | Description | Published |
|---|---|---|
| 20080206443 | ENHANCED BONDING LAYERS ON TITANIUM MATERIALS - The present invention provides a dense-coverage, adherent phosphorous-based coating on the native oxide surface of a material. Disclosed phosphorous-based coatings include phosphate and organo-phosphonate coatings. The present invention also provides further derivatization of the phosphorous-based coatings to yield dense surface coverage of chemically reactive coatings and osteoblast adhesion-promoting and proliferation-promoting coatings on the native oxide surface of a titanium material. | 08-28-2008 |
Kim S. Midwood, Littleborough GB
| Patent application number | Description | Published |
|---|---|---|
| 20120012033 | ENHANCED BONDING LAYERS ON TITANIUM MATERIALS - The present invention provides a dense-coverage, adherent phosphorous-based coating on the native oxide surface of a material. Disclosed phosphorous-based coatings include phosphate and organo-phosphonate coatings. The present invention also provides further derivatization of the phosphorous-based coatings to yield dense surface coverage of chemically reactive coatings and osetoblast adhesion-promoting and proliferation-promoting coatings on the native oxide surface of a titanium material. | 01-19-2012 |
