Color-conversion photonic crystal structure and color-conversion photonic crystal sensor using same
A photonic crystal structure employs such a structure that two layers having different refractive indices are laminated alternately, a polymer including a structure unit derived from a monomer that contains a fluorocarbon group being used for one of the repeated layers such that the photonic crystal structure can respond to humidity and/or organic solvent concentration. Using the photonic crystal structure, it is possible to manufacture a color-conversion photonic crystal sensor having excellent sensitivity and reproduction characteristics.
1. A color-conversion photonic crystal structure, comprising:
a first refractive index layer which includes a first polymer having a first refractive index; and a second refractive index layer which includes a second polymer having a second refractive index, wherein these refractive index layers are alternately laminated,
wherein the first refractive index is higher than the second refractive index; and
the second polymer comprises a structure unit represented by Formula 3:
wherein R 3 is selected from hydrogen and C 1-3 alkyl;
X 2 is C 1-10 alkyl substituted by at least one fluorine atom; and
n is independently an integer of 1 or more.
2. The structure of claim 1 , wherein a total laminating number of the first refractive index layer and the second refractive index layer ranges from 5 to 30.
3. The structure of claim 1 , wherein the first refractive index layer has a thickness of 50 to 150 nm, and the second refractive index layer has a thickness of 5 to 80 nm.
4. The structure of claim 1 , wherein the first polymer has a structure unit represented by Formulae 1 and 2 below in a molar ratio of 100:1 to 100:20, and a number average molecular weight of 10,000 to 100,000 g/mol:
wherein R 1 and R 2 are each independently selected from hydrogen and C 1-3 alkyl;
X 1 is selected from hydroxyl, cyano, nitro, amino, sulfonic acid or salts thereof, C 1-10 alkyl and C 1-10 alkoxy;
a1 is selected from 0, 1, 2 and 3;
Y 1 is O or NH; and
n is independently an integer of 1 or more.
5. The structure of claim 4 , wherein X 1 in Formula 1 is selected from methyl, ethyl, propyl, butyl, iso-butyl, sec-butyl and tert-butyl, and a1 is 0 or 1.
6. The structure of claim 1 , wherein the second polymer has the structure unit represented by Formula 3 and a structure unit represented by Formula 4 in a molar ratio of 100:1 to 100:5, and a number average molecular weight of 10,000 to 100,000 g/mol:
wherein R 3 and R 4 are each independently selected from hydrogen and C 1-3 alkyl;
X 2 is selected from C 1-10 alkyl substituted by at least one fluorine atom;
Y 2 is O or NH; and
n is independently an integer of 1 or more.
7. The structure of claim 6 , wherein X 2 in Formula 3 is selected from fluoromethyl, difluoromethyl, trifluoromethyl, 1-fluoroethyl, 2-fluoroethyl, 1,1-difluoroethyl, 1,2-difluoroethyl, 2,2-difluoroethyl, 1,1,2-trifluoroethyl, 1,2,2-trifluoroethyl, 1,1-trifluoroethyl, 1-fluoropropyl, 2-fluoropropyl, 1,1-difluoropropyl, 1,2-difluoropropyl, 2,2-difluoropropyl, 1,1,2-trifluoropropyl, 1,2,2-trifluoropropyl, 1-fluorobutyl, 2-fluorobutyl, 1,1-difluorobutyl, 1,2-difluorobutyl, 2,2-difluorobutyl, 1,1,2-trifluorobutyl; and 1,2,2-trifluorobutyl.
8. The structure of claim 1 , wherein a reflective wavelength of the photonic crystal structure is shifted by an external stimulation.
9. The structure of claim 8 , wherein the external stimulation occurs by a change in humidity or organic solvent concentration.
10. A color-conversion photonic crystal sensor comprising the color-conversion photonic crystal structure of claim 1 .