Dicarboxylic acid compounds, inorganic particles treated with the dicarboxylic acid compounds, and compositions thereof
Described herein is a dicarboxylic acid compound of formula (I): Wherein: R 3 comprises an aryl group, R 2 is an alkylene group comprising 1 to 6 carbon atoms, n is 0 or 1, R 1 is H or CH 3 , and X is S or NZ, wherein Z is H, an alkyl group comprising 1 to 4 carbon atoms or a phenyl group. Such compounds can be used to modify the surface of inorganic particles. These modified inorganic particles may then be advantageously used in polymerizable resins to increase the refractive index of the resulting composite, while enabling good flow properties of the polymerizable composition.
1. A dicarboxylic acid compound of formula (I)
wherein:
R 3 comprises a monovalent aromatic group,
R 2 is an alkylene group comprising 1 to 6 carbon atoms,
n is 0 or 1,
R 1 is H or CH 3 , and
X is S or NZ, wherein Z is H, an alkyl group comprising 1 to 4 carbon atoms, or a phenyl group.
2. The compound of claim 1 , wherein the aryl group comprises at least one of a phenyl, phenoxy, biphenyl, naphthyl, thiophenyl, carbazole, cumyl phenoxyl (bisphenol A), benzyl phenyl, phenoxy phenyl, fluorenyl, thiophenyl benzyl, and dibenzofuran.
3. The compound according to claim 1 , wherein R 3 is a phenyl, phenoxy phenyl, cumyl phenoxy, benzyl phenyl, naphthyloxy, benzophenone oxy, fluorenyl, thiophenyl phenyl, diphenyl phenoxy, carbazole, or thionaphthyl group.
4. The compound according to claim 1 , wherein n is 0 and R 3 is a phenyl, benzyl phenyl, biphenyl, fluorenyl, or naphthyl group.
5. The compound of claim 1 , wherein the dicarboxylic acid compound is selected from:
6. A particle composition comprising a reaction product of an inorganic particle and the compound according to claim 1 .
7. The particle composition of claim 6 , wherein the inorganic particle comprises at least one of a metal oxide, and a chalcogenide.
8. The particle composition of claim 7 , wherein the metal oxide is titanium oxide, zirconium oxide, aluminum oxide, hafnium oxide, cerium oxide, niobium oxide, and combinations thereof.
9. The particle composition of claim 7 , wherein the chalcogenide is zinc sulfide.
10. The particle composition of claim 6 , wherein the inorganic particle has an average diameter of at least 2 nm and at most 1 micron.
11. The particle composition of claim 6 , wherein at least 10% by weight of the compound according to Formula I is used versus the weight of the inorganic particle.
12. A particle composition comprising a surface modified inorganic particle, wherein the surface of an inorganic particle is modified with a plurality of the following groups of Formula II:
wherein
R 3 comprises an aryl group,
R 2 is an alkylene group comprising 1 to 6 carbon atoms,
n is 0 or 1,
R 1 is H or CH 3 , and
X is S or NZ, wherein Z is H or alkyl group comprising 1 to 4 carbon atoms or a phenyl group.
13. The particle composition of claim 12 , wherein the groups of Formula II are selected from:
14. The particle composition of claim 12 , wherein the inorganic particle has an average diameter of at least 5 nm and at most 50 nm.
15. A polymerizable composition comprising: the particle composition of claim 12 ; and a monofunctional aromatic monomer.
16. The polymerizable composition of claim 15 , wherein the monofunctional aromatic monomer comprises at least one of a phenyl, phenoxy, biphenyl, naphthyl, thiophenyl, carbazole, cumyl phenoxyl (bisphenol A), benzylphenyl, phenoxy phenyl, fluorenyl, thiophenylphenyl, and dibenzofuran.
17. The polymerizable composition of claim 16 , wherein the aromatic group of the monofunctional aromatic monomer is the same as the aryl group of R 3 .
18. The polymerizable composition of claim 15 , wherein the polymerizable composition has a viscosity of less than 30 cP at 60° C.
19. An optical article comprising the reaction product of the polymerizable composition according to claim 15 .