Dental ceramic coloring liquids
US-9095403-B2 · Aug 4, 2015 · US
US10350032B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10350032-B2 |
| Application number | US-201515128637-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 18, 2015 |
| Priority date | Mar 25, 2014 |
| Publication date | Jul 16, 2019 |
| Grant date | Jul 16, 2019 |
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The invention relates to a process for selectively treating parts of the surface of a porous dental zirconia article, the process comprising the steps of providing a liquid composition and a porous 3-dimensional dental zirconia article having an outer and inner surface, applying the liquid composition to only a part the outer surface and/or inner surface of the porous dental zirconia article, the liquid composition comprising a whitening agent comprising a phosphorous containing component, the phosphorous containing component comprising a phosphate, phosphone or phosphine moiety, with the proviso that at least one P—O unit of the phosphate, phosphone or phosphine moiety is dissociable or able to otherwise interact with zirconia. The invention also relates to a dental zirconia article obtainable or obtained by such a process and a kit of parts comprising a container containing a certain liquid composition.
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The invention claimed is: 1. A process for selectively treating parts of the surface of a porous dental zirconia article, the process comprising: a) providing a liquid composition and a porous 3-dimensional dental zirconia article having an outer and inner surface, b) applying the liquid composition to only a part of the outer surface and/or inner surface of the porous dental zirconia article, the liquid composition comprising: a whitening agent comprising a phosphorus containing component, the phosphorus containing component comprising a phosphate, phosphone or phosphine moiety, wherein at least one P—O unit of the phosphate, phosphone or phosphine moiety is dissociable or able to interact with zirconia. 2. The process of claim 1 , the phosphorus containing component being selected from acids comprising phosphate, phosphone or phosphine moieties, salts comprising phosphate, phosphone or phosphine moieties or mixtures of acids and salts thereof. 3. The process of claim 1 , the phosphorus containing component being characterized by formula (1): (R1O)(R2)(R3)P=X(1) with X being O or S, R1 being H, ammonium, a metal ion or an organic moiety, R2 and R3 being independently selected from R1 or OR1, with the proviso that at least one R1, R2 or R3 is able to dissociate from O in the liquid composition or comprises an oxygen-containing functional group which can interact with zirconia. 4. The process of claim 1 , the liquid composition being characterized by at least one of the following features: viscosity: from 10 mPa*s to 10,000 at 23° C., being transparent to visible light. 5. The process of claim 1 , the liquid composition comprising the whitening agent in an amount of 5 to 60 wt.-% with respect to the whole composition. 6. The process of claim 1 , the liquid composition comprising in addition one or more of the following components: a solvent being able to dissolve the whitening agent, preferably selected from water, alcohols, ketons and mixtures thereof; additives; and mixtures thereof. 7. The process of claim 1 , the liquid composition being essentially free of one, more or all of the following components: insoluble components, nano-sized particles having a diameter from 1 nm to 500 nm, colouring ions selected from iron, erbium, praseodymium or mixtures thereof, reactive organic monomers, initiators suitable for curing reactive organic monomers, and combinations thereof. 8. The process of claim 1 , the liquid composition being contained in a pen, the pen comprising a housing, a brush tip, a removable cap and a reservoir for storing the liquid composition described in claim 1 . 9. The process of claim 1 , the porous dental zirconia article being characterized by either of the following features: the porous dental zirconia article not showing a N2 adsorption and/or desorption of isotherm type IV according to IUPAC classification and having a BET surface from 2 to 20 m 2 /g; the porous dental zirconia article showing a N2 adsorption and/or desorption of isotherm type IV according to IUPAC classification and having a BET surface from 10 to 200 m 2 /g. 10. The process of claim 1 , the porous dental zirconia article being obtained by either of the following processes: a process comprising the steps of pressing zirconia powder to a 3-dimensional object and partially sintering the 3-dimensional object, or a process comprising the step of heat-treating a zirconia aerogel. 11. The process of claim 1 , the porous dental zirconia article being characterized by at least one, more or all of the following features: showing a nitrogen adsorption and desorption isotherm with hysteresis loop; showing a hysteresis loop of type H1 according to IUPAC classification; showing a N2 adsorption and desorption isotherm with a hysteresis loop in a p/p 0 range of 0.70 to 0.95; average connected pore diameter: from 10 to 100 nm; average grain size: less than 100 nm; BET surface: from 10 to 200 m 2 /g; biaxial flexural strength: from 10 to 40 MPa; Vickers hardness: from 25 to 150; density: 30 to 95% of theoretical density; x, y, z dimension: at least 5 mm; having an isotropic shrinkage behaviour. 12. The process of claim 1 , comprising: drying the porous dental zirconia article, the surface of which has been selectively treated with the liquid composition of claim 1 , sintering the porous dental zirconia article.
comprising zirconium oxide · CPC title
comprising ceramics · CPC title
by mechanical means · CPC title
Phosphate cements · CPC title
for medical or dental applications · CPC title
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