Electrochromic mirror
First Claim
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1. An electrochromic mirror in which an ion conductive layer is arranged between a transparent electrically conductive substrate and a reflective electrically conductive substrate;
- wherein the ion conductive layer contains an organic compound having a structure exhibiting a cathodic electrochromic property and a structure exhibiting an anodic electrochromic property, and wherein the organic compound comprises a metallocene-bipyridine derivative represented by one of formulas (4) to (7);
wherein A−
and B−
may be the same or different and are each independently a pair-ion selected from the group consisting of a halogen anion, ClO4−
, BF4−
PF6−
, CHCOO−
, and CH3(C6H4)SO3;
Me is selected from the group consisting of Cr, Co, Fe, Mg, Ni, Os, Ru, V, X—
Hf—
Y, X—
Mo—
Y, X—
Nb—
Y, X—
Ti—
Y, X—
V—
Y and X—
Zr—
Y, wherein X and Y may be the same or different and are each independently selected from the group consisting of hydrogen, a halogen, and an alkyl group having 1 to 12 carbon atoms;
m is an integer 0≦
m≦
4;
n is an integer 0≦
n≦
4;
R1 and R2 may be the same or different and are each independently a hydrocarbon group selected from the group consisting of alkyl, alkenyl, and aryl groups having 1 to 10 carbon atoms;
R3 and R4 may be the same or different and are each independently a hydrocarbon residue having 1 to 20 carbon atoms; and
R5 is a hydrocarbon group selected from the group consisting of alkyl, cycloalkyl, alkenyl, aryl, and aralkyl groups having 1 to 20 carbon atoms, heterocyclic aromatic groups having 4 to 20 carbon atoms, and substituted hydrocarbon or heterocyclic aromatic groups obtained by substituting at least one hydrogen of the hydrocarbon group or heterocyclic aromatic group with a substituent group;
and wherein spacers are dispersed in the ion conductive layer and a difference in refraction index between the spacers and the ion conductive layer is ±
0.03 or less.
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Abstract
A conventional electrochromic mirror comprises an ion conductive layer provided between a transparent electrically conductive substrate and a reflective electrically conductive substrate and containing spacers. The spacers can be perceived when the mirror was viewed. According to the present invention, the difference in refraction index between the spacers and the ion conductive layer is ±0.03 or less. Therefore, the electrochromic mirror having spacers in the ion conductive layer which are hardly perceived can be provided.
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Citations
2 Claims
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1. An electrochromic mirror in which an ion conductive layer is arranged between a transparent electrically conductive substrate and a reflective electrically conductive substrate;
- wherein the ion conductive layer contains an organic compound having a structure exhibiting a cathodic electrochromic property and a structure exhibiting an anodic electrochromic property, and wherein the organic compound comprises a metallocene-bipyridine derivative represented by one of formulas (4) to (7);
wherein A−
and B−
may be the same or different and are each independently a pair-ion selected from the group consisting of a halogen anion, ClO4−
, BF4−
PF6−
, CHCOO−
, and CH3(C6H4)SO3;Me is selected from the group consisting of Cr, Co, Fe, Mg, Ni, Os, Ru, V, X—
Hf—
Y, X—
Mo—
Y, X—
Nb—
Y, X—
Ti—
Y, X—
V—
Y and X—
Zr—
Y, wherein X and Y may be the same or different and are each independently selected from the group consisting of hydrogen, a halogen, and an alkyl group having 1 to 12 carbon atoms;
m is an integer 0≦
m≦
4;
n is an integer 0≦
n≦
4;
R1 and R2 may be the same or different and are each independently a hydrocarbon group selected from the group consisting of alkyl, alkenyl, and aryl groups having 1 to 10 carbon atoms;
R3 and R4 may be the same or different and are each independently a hydrocarbon residue having 1 to 20 carbon atoms; and
R5 is a hydrocarbon group selected from the group consisting of alkyl, cycloalkyl, alkenyl, aryl, and aralkyl groups having 1 to 20 carbon atoms, heterocyclic aromatic groups having 4 to 20 carbon atoms, and substituted hydrocarbon or heterocyclic aromatic groups obtained by substituting at least one hydrogen of the hydrocarbon group or heterocyclic aromatic group with a substituent group;
and wherein spacers are dispersed in the ion conductive layer and a difference in refraction index between the spacers and the ion conductive layer is ±
0.03 or less.- View Dependent Claims (2)
- wherein the ion conductive layer contains an organic compound having a structure exhibiting a cathodic electrochromic property and a structure exhibiting an anodic electrochromic property, and wherein the organic compound comprises a metallocene-bipyridine derivative represented by one of formulas (4) to (7);
Specification