Red and red-shade violet inorganic oxide materials containing cobalt
The current technology is directed to red and red-shade violet pigments with an hexagonal ABO 3 structure of the form Y(In, M)O 3 in which M is substituted for In in the trigonal bipyramidal B site of the ABO 3 structure, and where M is a mixture containing Co 2+ and charge compensating ions, or M is a mixture containing Co 2+ and charge compensating ions, as well as other aliovalent and isovalent ions.
1. An ABO 3 material having a formula A(M,M′)O 3
wherein A is Y, or mixtures of Y with La, Sc, Gd, Tb, Dy, Ho, Er, Tm, Yb or Lu;
wherein M=In, or mixtures In with Al, Ga, Cr, Fe, Ni, B or Mn;
wherein M′ is a mixture of M A and M B cations;
wherein M A =Co, or mixtures of Co with Zn, Mg, Ca, Sr, Ba, Cu or Ni;
wherein M B =Ti, Zr- or Sn, or mixtures of Ti, Zr or Sn with Si, V, Sb, Nb, Mo, W, Ta or Bi;
and
wherein cations are present in proportions close to those for making an electrically neutral oxide with a hexagonal crystal structure.
2. The material of claim 1 wherein the formulas are selected from:
YIn 1−x (Co 0.5 Ti 0.5 ) x O 3
YIn 1−x ((Co,Zn) 0.5 Ti 0.5 )xO 3
wherein 0.01<x≤0.60.
3. The material of claim 1 , where M and M′ are in a trigonal bipyramidal B site of the ABO 3 structure.
4. The material of claim 1 , where M′ is a mixture containing Co 2+ and wherein cations are present in proportions close to those for making the electrically neutral oxide with a hexagonal crystal structure.
5. The material of claim 1 , which is a red-shade violet pigment having a hexagonal ABO 3 structure of the form Y(In, M′)O 3 .
6. The material of claim 1 , where M is In in a trigonal bipyramidal B site of the A(M,M′)O 3 structure.
7. The material of claim 1 for use as a pigment in paint, ink, glass, enamel, glaze, plastic or decorative cosmetic.
8. A method of preparing the material of claim 1 , which comprises a step of heating a reaction mixture under vacuum, in air, or in an inert atmosphere comprising nitrogen, argon, and a mixture thereof.
9. The method of claim 8 , which comprises the step of treating the reaction mixture with a reducing substance selected from silicon, silicon monoxide, carbon, antimony (III) oxide, and cobalt metal.
10. The method of claim 8 , wherein the reaction mixture comprises one or more mineralizers including, but not limited to, alkali and alkaline earth metal salts, for example metal hydroxides, halides, carbonates, sulfates, and phosphates, metal oxides such as molybdenum, tungsten, vanadium, and bismuth oxides, and boron oxides such as boric acid, boron oxide, or sodium tetraborate.
11. The material of claim 1 wherein the formulas are selected from:
YCo 0.20 Ti 0.20 In 0.60 O 3 , and
YCo x Ti x In 1-2x O 3 .