Visible-light-responsive photocatalyst powder, and visible-light-responsive photocatalytic material, photocatalytic coating material and photocatalytic product each using the same
A visible-light-responsive photocatalyst powder includes a tungsten oxide powder. The tungsten oxide powder has color whose a* is −5 or less, b* is −5 or more, and L* is 50 or more when the color of the powder is expressed by an L*a*b* color system. Further, the tungsten oxide powder has a BET specific surface area in a range of 11 to 820 m 2 /g.
1. A visible-light-responsive photocatalyst powder, comprising:
a photocatalytic tungsten oxide powder having color whose a* is −20 or more and −10 or less, b* is 5 or more and 35 or less, and L* is 80 or more when the color of the powder is expressed by an L*a*b* color system, a BET specific surface area in a range of 55 to 250 m 2 /g, and an average particle size (D50) by image analysis in a range of 3.3 to 15 nm,
wherein the photocatalytic tungsten oxide powder has a crystal structure containing two or more selected from the group consisting of a monoclinic crystal, a triclinic crystal, and a rhombic crystal,
wherein a content of nitrogen as an impurity element in the photocatalytic tungsten oxide powder is 300 ppm or less, and
wherein the photocatalytic tungsten oxide powder is photocatalytic when irradiated with visible light having a wavelength in a range of 430 to 500 nm.
2. The visible-light-responsive photocatalyst powder according to claim 1 ,
wherein when the photocatalytic tungsten oxide powder is measured by X-ray diffractometry, the photocatalytic tungsten oxide powder has a highest peak in a 2θ range of 22.5 to 25° and has a peak in a 2θ range of 33 to 35°.
3. The visible-light-responsive photocatalyst powder according to claim 1 ,
wherein a content of a metal element as an impurity element in the photocatalytic tungsten oxide powder is 10 mass % or less.
4. The visible-light-responsive photocatalyst powder according to claim 1 ,
wherein the photocatalytic tungsten oxide powder contains a transition metal element in a range of 50 mass % or less.
5. A visible-light-responsive photocatalytic material containing the visible-light-responsive photocatalyst powder according to claim 1 in a range of not less than 1 mass % nor more than 100 mass %,
wherein the material is photocatalytic when irradiated with visible light having a wavelength in a range of 430 to 500 nm.
6. A visible-light-responsive photocatalytic coating material containing the visible-light-responsive photocatalytic material according to claim 5 in a range of not less than 0.1 mass % nor more than 90 mass %.
7. A visible-light-responsive photocatalytic product comprising the visible-light-responsive photocatalytic material according to claim 5 ,
wherein the product is photocatalytic when irradiated with visible light having a wavelength in a range of 430 to 500 nm.
8. The visible-light-responsive photocatalytic product according to claim 7 ,
wherein the product is fiber or glass containing the visible-light-responsive photocatalytic material.
9. A visible-light-responsive photocatalytic product comprising a coating layer of the visible-light-responsive photocatalytic coating material according to claim 6 ,
wherein the product is photocatalytic when irradiated with visible light having a wavelength in a range of 430 to 500 nm.
10. The visible-light-responsive photocatalytic product according to claim 9 ,
wherein the product is fiber or glass having the coating layer of the visible-light-responsive photocatalytic coating material.
11. The visible-light-responsive photocatalytic product according to claim 10 ,
wherein the glass coated with the visible-light-responsive photocatalytic coating material has a light transmittance of 50% or more for 550 nm of wavelength.
12. The visible-light-responsive photocatalytic product according to claim 9 ,
wherein the product is disposed in an indoor space of an automobile.
13. The visible-light-responsive photocatalyst powder according to claim 1 ,
wherein the photocatalytic tungsten oxide powder is obtained by a sublimation.