COLOR DISPLAY DEVICES
20170210995 ยท 2017-07-27
Inventors
Cpc classification
G02F1/1335
PHYSICS
C09K19/54
CHEMISTRY; METALLURGY
G02F1/13439
PHYSICS
C09K19/544
CHEMISTRY; METALLURGY
G02F1/1334
PHYSICS
International classification
G02F1/1334
PHYSICS
G02F1/1335
PHYSICS
C09K19/54
CHEMISTRY; METALLURGY
Abstract
A color display device includes a plurality of pixels. Each of the pixels includes a first transparent electrode and a second transparent electrode, opposing to each other, a polymer layer between the first transparent electrode and the second transparent electrode, a first coloring material dispersed in the polymer layer, liquid crystals provided in the polymer layer, and a second coloring material dispersed in the liquid crystals. The first coloring material and the second coloring material presents different colors, and each of the first coloring material and the second coloring material includes at least one of a red coloring material, a green coloring material, a blue coloring material, a yellow coloring material, a cyan coloring material, and a magenta coloring material.
Claims
1. A color display device comprising a plurality of pixels, each of the pixels comprising: a first transparent electrode and a second transparent electrode, opposing to each other; a polymer layer between the first transparent electrode and the second transparent electrode; a first coloring material dispersed in the polymer layer; liquid crystals provided in the polymer layer; and a second coloring material dispersed in the liquid crystals, the first coloring material and the second coloring material presenting different colors, each of the first coloring material and the second coloring material comprising at least one of a red coloring material, a green coloring material, a blue coloring material, a yellow coloring material, a cyan coloring material, and a magenta coloring material.
2. The color display device of claim 1, wherein the first coloring material comprises an aromatic ring structure or a condensed ring structure.
3. The color display device of claim 2, wherein an amount ratio of the first coloring material in the polymer layer is from 0.01% to 80% by weight.
4. The color display device of claim 2, wherein the first coloring material comprises the blue coloring material, and the blue coloring material has a structure of the following Formula 1 or 2: ##STR00011## where R.sub.1 is one of NHC.sub.4H.sub.9, NHC.sub.2H.sub.5, NHCH.sub.3, NH.sub.2, or NH(CnH2n+1, 3n20), R.sub.2 is one of H, OH, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, or at least one aromatic group, each of R.sub.3 and R.sub.4 is one of NHC.sub.4H.sub.9, NHC.sub.2H.sub.5, NHCH.sub.3, NH.sub.2, NH(CnH2n+1, 3n20), H, OH, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, or at least one aromatic group, R.sub.5 is one of SO.sub.3Na or SO.sub.3H, and R.sub.6 is one of NH.sub.2, NHCH.sub.3 or NHC.sub.6H.sub.5.
5. The color display device of claim 2, wherein the first coloring material comprises the red coloring material, and the red coloring material has a structure of the following Formula 3 or 4: ##STR00012## where R.sub.7 is one of Cr, Mo, W, Mn, V, Nb or Ta, each of R.sub.8, R.sub.9, R.sub.10 and R.sub.11 is one of NO.sub.2, NH.sub.3, NHCH.sub.3, NHC.sub.4H.sub.9, NHC.sub.2H.sub.5, NH(CnH2n+1, 3n20), or at least one aromatic group, R.sub.12 is one of SO.sub.3Na or SO.sub.3H, R.sub.13 is one of COOH or COONa, each of R.sub.14 and R.sub.15 is one of H, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, NHC.sub.4H.sub.9, NHC.sub.2H.sub.5, NHCH.sub.3, NH.sub.2, NH(CnH2n+1, 3n20), or at least one aromatic group, and R.sub.16 is one of H, OH, SO.sub.3H or COOH.
6. The color display device of claim 2, wherein the first coloring material comprises the green coloring material, and the green coloring material has a structure of the following Formula 5: ##STR00013## where each of R.sub.17 and R.sub.18 has one of the structures of the following Formulae 6 to 11: ##STR00014##
7. The color display device of claim 2, wherein the second coloring material comprises the yellow coloring material, and the yellow coloring material has a structure of the following Formula 12: ##STR00015## where R.sub.19 is one of N(CH.sub.3).sub.2, N(C.sub.2H.sub.5).sub.2, N(CnH2n+1, 3n20).sub.2, R.sub.20 is one of H, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, or at least one aromatic group.
8. The color display device of claim 2, wherein the second coloring material comprises the magenta coloring material, and the magenta coloring material has a structure of the following Formula 13: ##STR00016## where each of R.sub.22 and R.sub.23 is one of H, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, or at least one aromatic group, and R.sub.21 has one of the structures of the following Formulae 14 to 25: ##STR00017## ##STR00018##
9. The color display device of claim 2, wherein the second coloring material comprises the cyan coloring material, and the cyan coloring material has a structure of the following Formula 26: ##STR00019## where each of R.sub.24 and R.sub.25 is one of O, S, Se, CH.sub.2, NH or an ester, each of R.sub.26 and R.sub.27 is one of H, CH.sub.3, C.sub.2H.sub.5, C.sub.3H.sub.7, C.sub.4H.sub.9, C.sub.5H.sub.11, linear alkyl having 6 to 20 carbon atoms, branch alkyl having 6 to 20 carbon atoms, linear alkene having 6 to 20 carbon atoms, branch alkene having 6 to 20 carbon atoms, or at least one aromatic group.
10. The color display device of claim 1, wherein an amount ratio of the second coloring material in the liquid crystals is from 0.01% to 10% by weight.
11. The color display device of claim 1, further comprising a black coloring material dispersed in the liquid crystals.
12. The color display device of claim 11, wherein the black coloring material comprises one structure of a structure obtained by connecting three naphthalene rings via two azo groups, a structure obtained by connecting two naphthalene rings and one aromatic ring via two azo groups, or a structure obtained by connecting three naphthalene rings and one aromatic ring via three azo groups.
13. The color display device of claim 11, wherein an amount of the black coloring material in the liquid crystals is from 0.01% to 10% by weight.
14. The color display device of claim 1, wherein the color display device comprises a plurality of pixel groups, and each of the pixel groups comprises the plurality of pixels, the first coloring materials included in each of the plurality of pixels presenting the same color, the second coloring materials included in each of the plurality of pixels presenting different colors from each other.
15. The color display device of claim 1, wherein the color display device comprises a plurality of pixel groups, and each of the pixel groups comprises the plurality of pixels, the first coloring materials included in each of the plurality of pixels presenting different colors from each other, the second coloring materials included in each of the plurality of pixels presenting the same color.
16. The color display device of claim 1, wherein each of the pixels further comprises: a first transparent substrate provided on one side of the first transparent electrode; a second transparent substrate provided on one side of the second transparent electrode; and a reflecting layer provided on one side of the first transparent substrate, the first transparent electrode and the second transparent electrode being provided between the first transparent substrate and the second transparent substrate, the reflecting layer being spaced apart from the first transparent electrode with the first transparent substrate therebetween.
17. The color display device of claim 1, wherein each of the pixels further comprises: a first transparent substrate provided on one side of the first transparent electrode; a second transparent substrate provided on one side of the second transparent electrode; and a light absorption layer provided on one side of the first transparent substrate, the first transparent electrode and the second transparent electrode being provided between the first transparent substrate and the second transparent substrate, the light absorption layer being spaced apart from the first transparent electrode with the first transparent substrate therebetween.
18. The color display device of claim 1, wherein each of the pixels comprises a light emitting device provided on one side of the first transparent electrode, and the light emitting device is spaced apart from the second transparent electrode with the first transparent electrode therebetween.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0018] The accompanying drawings are included to provide a further understanding of the inventive concept, and are incorporated in and constitute a part of this specification. The drawings illustrate exemplary embodiments of the inventive concept and, together with the description, serve to explain principles of the inventive concept. In the drawings:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028] Hereinafter, preferred embodiments of the inventive concept will be explained in detail with reference to the accompanying drawings for the sufficient understanding of the configuration and effects of the inventive concept. The inventive concept may, however, be embodied in different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the inventive concept to those skilled in the art. In the drawings, the dimensions of each element are enlarged for convenience of explanation, and the scale of each element may be exaggerated or reduced.
[0029] Unless otherwise defined, all terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this inventive concept belongs. Hereinafter, exemplary embodiments of the inventive concept will be described in detail with reference to the accompanying drawings.
[0030]
[0031] Referring to
[0032] The first substrate 100 and the second substrate 130 are transparent substrates, and may be, for example, glass substrates or plastic substrates. The first electrode 110 may be adjacent to the first substrate 100, and the second electrode 120 may be adjacent to the second substrate 130. The first electrode 110 and the second electrode 120 may be transparent electrodes. For example, the first electrode 110 and the second electrode 120 may include indium tin oxide (ITO), indium zinc oxide (IZO), silver nanowires, carbon nanotubes, graphene, PEDOT:PSS, polyaniline, polythiophene, or a mixture thereof.
[0033] The polymer layer 140 may include a hardened polymer material. The liquid crystals 150 may be provided in plural, and the plurality of the liquid crystals 150 may be dispersed in the polymer layer 140. Each of the first coloring material 160 and the second coloring material 170 may present different colors from each other. Each of the first coloring material 160 and the second coloring material 170 may include at least one of a red coloring material, a green coloring material, a blue coloring material, a yellow coloring material, a cyan coloring material, or a magenta coloring material. The first coloring material 160 and the second coloring material 170 may not be mixed each other. That is, the first coloring material 160 may not have miscibility with the liquid crystals 150 but may have dispersibility in the polymer layer 140, and the second coloring material 170 may not have miscibility with the polymer layer 140 but may have dispersibility in the liquid crystals 150.
[0034] The liquid crystals 150 in which the second coloring material 170 is dispersed, may be formed by physically mixing the liquid crystals 150 and the second coloring material 170. The polymer layer 140 may be formed by injecting a solution including the first coloring material 160, the liquid crystals 150 in which the second coloring material 170 is dispersed, a monomer (or an oligomer), and a reaction initiator onto the first electrode 110, and irradiating ultraviolet light to harden the solution. For example, the monomer may be a vinyl monomer, and the vinyl monomer may include at least one of triethylopropane triacrylate (TMPTA), tri(propylene glycol) diacrylate (TPGDA), pentaerythritol triacrylate (PETA), trimethylolpropane ethoxylate triacrylate (TMPEOTA), methyl methacrylate (MMA), methacrylate (MA), tri(propylene glycol) glycerolate diacrylate (TPGDA), vinylacrylate (VA), ethylene glycol dimethacrylate (EGDA), epoxy acrylate monomer or oligomer, 1,6-hexanediol diacrylate (HAD), styrene (ST), divinyl benzene (DVB), acrylonitrile (AN), vinylidene chloride (VDC), vinylbenzyl chloride (VBC), vinyl stearate (VS), or vinyl propionate (VP). The reaction initiator may be a photoinitiator, a thermal initiator, or an oxidation reduction initiator. The photo initiator may include at least one of 1-hydroxy-cyclohexyl-phenyl-ketone (Irgacure 907), 2-methyl-1[4-(methylthio)phenyl]-2-morpholinopropane-1-one (Irgacure 184C), 2-hydroxy-2-methyl-1-phenyl-propane-1-one (Darocur 1173), an initiator (Irgacure 500) obtained by mixing 50 wt % of Irgacure 184 (Irgacure 184C) and 50 wt % of benzophenone, an initiator (Irgacure 1000) obtained by mixing 20 wt % of Irgacure 184 and 80 wt % of Irgacure 1173, 2-hydroxy-1-[4-(2-hydroxyethoxy)phenyl]-2-methyl-1-propanone (Irgacure 2959), methylbenzoylformate (Darocur MBF), alpha, alpha-dimethoxy-alpha-phenylacetophenone (Irgacure 651), 2-benzyl-2-(dimethylamino)-1-[4-(4-morpholinyl) phenyl]-1-butanone (Irgacure 369)), an initiator (Irgacure 1300) obtained by mixing 30 wt % of Irgacure 369 and 70 wt % of Irgacure 651, diphenyl (2,4,6-trimethylbenzoyl)-phosphine oxide (Darocur TPO), an initiator (Darocur 4265) obtained by mixing 50 wt % of Darocur TPO and 50 wt % of Darocur 1173, phosphine oxide, phenyl bis(2,4,6-trimethyl benzoyl (Irgacure 819), an initiator (Irgacure 2005) obtained by mixing 5 wt % of Irgacure 819 and 95 wt % of Darocur 1173, an initiator (Irgacure 2010) obtained by mixing 10 wt % of Irgacure 819 and 90 wt % of Darocur 1173, an initiator (Irgacure 2020) obtained by mixing 20 wt % of Irgacure 819 and 80 wt % of Darocur 1173, a mixture initiator (HSP 188) containing bis(.eta.5-2,4-cyclopentadien-1-yl) bis[2,6-difluoro-3-(1H-pyrrol-1-yl)phenyl]titanium (Irgacure 784), and benzophenone, or 1-hydroxy-cyclohexylphenyl-ketone (CPA). The thermal initiator may include, for example, at least one of benzoyl peroxide (BP), acetyl peroxide (AP), dilauryl peroxide (DP), di-tert-butyl peroxide (t-BTP), cumyl hydroperoxide (CHP), hydrogen peroxide (HP), potassium peroxide (PP), 2,2-azobisisobutyronitrile (AIBN), an azo compound initiator, or silver alkyls. The oxidation reduction initiator may include, for example, persulfate (K.sub.2S.sub.2O.sub.8) and/or a redox initiator.
[0035] The first coloring material 160 may include an aromatic ring structure or a condensed ring structure. According to some embodiments, the first coloring material 160 may include at least one of the red coloring material, the green coloring material, or the blue coloring material. The amount ratio of the first coloring material 160 in the polymer layer 140 may be from about 0.01% to about 80% by weight.
[0036] In the case that the first coloring material 160 includes the blue coloring material, the blue coloring material may have a structure of the following Formula 1 or 2.
##STR00001##
[0037] where R.sub.1 is one of NHC.sub.4H.sub.9, NHC.sub.2H.sub.5, NHCH.sub.3, NH.sub.2, or NH(CnH2n+1, 3n20), R.sub.2 is one of H, OH, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, or at least one aromatic group. Each of R.sub.3 and R.sub.4 is one of NHC.sub.4H.sub.9, NHC.sub.2H.sub.5, NHCH.sub.3, NH.sub.2, NH(CnH2n+1, 3n20), H, OH, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, or at least one aromatic group. R.sub.5 is one of SO.sub.3Na or SO.sub.3H, and R.sub.6 is one of NH.sub.2, NHCH.sub.3 or NHC.sub.6H.sub.5.
[0038] In the case that the first coloring material 160 includes the red coloring material, the red coloring material may have a structure of the following Formula 3 or 4.
##STR00002##
[0039] where R.sub.7 is one of Cr, Mo, W, Mn, V, Nb or Ta, each of R.sub.8, R.sub.9, R.sub.10 and R.sub.11 is one of 'NO.sub.2, NH.sub.3, NHCH.sub.3, NHC.sub.4H.sub.9, NHC.sub.2H.sub.5, NH(CnH2n+1, 3n20), or at least one aromatic group, R.sub.12 is one of SO.sub.3Na or SO.sub.3H, R.sub.13 is one of COOH or COONa, each of R.sub.14 and R.sub.15 is one of H, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, NHC.sub.4H.sub.9, NHC.sub.2H.sub.5, NHCH.sub.3, NH.sub.2, NH(CnH2n+1, 3n20), or at least one aromatic group, and R.sub.16 is one of H, OH, SO.sub.3H or COOH.
[0040] In the case that the first coloring material 160 includes the green coloring material, the green coloring material may have a structure of the following Formula 5.
##STR00003##
[0041] where each of R.sub.17 and R.sub.18 has one of the structures of the following Formulae 6 to 11.
##STR00004##
[0042] In some embodiments, the second coloring material 170 may include at least one of the yellow coloring material, the cyan coloring material, or the magenta coloring material. The amount ratio of the second coloring material 170 in the liquid crystals 150 may be from about 0.01% to about 10% by weight.
[0043] In the case that the second coloring material 170 includes the yellow coloring material, the yellow coloring material may have a structure of the following Formula 12.
##STR00005##
[0044] where R.sub.19 is one of N(CH.sub.3).sub.2, N(C.sub.2H.sub.5).sub.2, N(CnH2n+1, 3n20).sub.2, R.sub.20 is one of H, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, or at least one aromatic group.
[0045] In the case that the second coloring material 170 includes the magenta coloring material, the magenta coloring material may have a structure of the following Formula 13.
##STR00006##
[0046] where each of R.sub.22 and R.sub.23 is one of H, CH.sub.3, C.sub.2H.sub.5, linear alkyl having 3 to 20 carbon atoms, branch alkyl having 3 to 20 carbon atoms, linear alkene having 3 to 20 carbon atoms, branch alkene having 3 to 20 carbon atoms, or at least one aromatic group, and R.sup.21 has one of the structures of the following Formulae 14 to 25.
##STR00007## ##STR00008##
[0047] In the case that the second coloring material 170 includes the cyan coloring material, the cyan coloring material may have a structure of the following Formula 26.
##STR00009##
[0048] where each of R.sub.24 and R.sub.25 is one of O, S, Se, CH.sub.2, NH or an ester, each of R.sub.26 and R.sub.27 is one of H, CH.sub.3, C.sub.2H.sub.5, C.sub.3H.sub.7, C.sub.4H.sub.9, C.sub.5H.sub.11, linear alkyl having 6 to 20 carbon atoms, branch alkyl having 6 to 20 carbon atoms, linear alkene having 6 to 20 carbon atoms, branch alkene having 6 to 20 carbon atoms, or at least one aromatic group.
[0049] Each of the pixels P may further include a reflecting layer 180 provided on one side of the first substrate 100. The reflecting layer 180 may be spaced apart from the first electrode 110 with the first substrate 100 therebetween. That is, the reflecting layer 180 may be provided on one side of the first substrate 100, and the first electrode 110 may be provided on the other side facing the one side of the first substrate 100.
[0050]
[0051] Referring to
[0052] Referring to
[0053] As shown in
[0054]
[0055] Referring to
[0056] The black coloring material 170 may include one of a structure obtained by connecting three naphthalene rings via two azo groups, a structure obtained by connecting two naphthalene rings and one aromatic ring via two azo groups, or a structure obtained by connecting three naphthalene rings and one aromatic ring via three azo groups. For example, the black coloring material 170 may have one of the structures of the following Formulae 27 to 33.
##STR00010##
[0057] where each of R.sub.28, R.sub.29, R.sub.30, R.sub.31 and R.sub.32 is one of H, CH.sub.3, C.sub.2H.sub.5, C.sub.3H.sub.7, C.sub.4H.sub.9, C.sub.5H.sub.11, linear alkyl having 6 to 20 carbon atoms, branch alkyl having 6 to 20 carbon atoms. Each of R.sub.33, R.sub.34, R.sub.35, R.sub.36 and R.sub.37 is one of H, CH.sub.3, C.sub.2H.sub.5, C.sub.3H.sub.7, C.sub.4H.sub.9, C.sub.5H.sub.11, linear alkyl having 6 to 20 carbon atoms, branch alkyl having 6 to 20 carbon atoms. R.sub.38 is one of H, CH.sub.3, C.sub.2H.sub.5, C.sub.3H.sub.7, C.sub.4H.sub.9, C.sub.5H.sub.11, linear alkyl having 6 to 20 carbon atoms, or branch alkyl having 6 to 20 carbon atoms.
[0058] The amount ratio of the black coloring material 190 in the liquid crystals 150 may be from about 0.01% to about 10% by weight.
[0059]
[0060] Referring to
[0061] Referring to
[0062] As shown in
[0063]
[0064] Referring to
[0065] Each of the pixels P may further include a light absorption layer 200 provided on one side of the first substrate 100. The light absorption layer 200 may be spaced apart from the first electrode 110 with the first substrate 100 therebetween. That is, the light absorption layer 200 may be provided on one side of the first substrate 100, and the first electrode 110 may be provided on the other side opposed to the one side of the first substrate 100.
[0066]
[0067] Referring to
[0068] Referring to
[0069]
[0070] Referring to
[0071] In the case that the light emitting device 210 is not driven, incident light, as explained referring to
[0072] In the case that the light emitting device 210 is driven, light L generated from the light emitting device 210 may penetrate the laminated structure SS and be emitted out through the second substrate 130. In this case, the laminated structure SS may be, as explained referring to
[0073] As shown in
[0074] According to an embodiment, in the case that the amount of the incident light is insufficient due to a dark external environment, images with good visibility may be attained by driving the light emitting device 210.
[0075]
[0076] Referring to
[0077] The plurality of pixels P1, P2 and P3 may be provided between the first substrate 100 and the second substrate 130 opposed to each other, and a partition 310 may be provided between the first substrate 100 and the second substrate 130 to separate the plurality of the pixels P1, P2 and P3 from each other. In a display device with a passive matrix driving type, the first electrodes 110 of the plurality of the pixels P1, P2 and P3 may be formed in parallel in a stripe shape, and the second electrodes 120 of the plurality of the pixels P1, P2 and P3 may be formed in parallel in a stripe shape so as to cross the first electrodes 110. In a display device with an active matrix driving type, the second electrodes 120 of the plurality of the pixels P1, P2 and P3 may be formed in one body and may be used as a common electrode. The first electrodes 110 of the plurality of the pixels P1, P2 and P3 may be formed by patterning so as to correspond to each of the plurality of the pixels P1, P2 and P3.
[0078] According to some embodiments, the first coloring materials 160 included in the plurality of pixels P1, P2 and P3 may take the same color, and the second coloring materials 170 included in the plurality of the pixels P1, P2 and P3 may take different colors. According to another embodiment, the first coloring materials 160 included in the plurality of pixels P1, P2 and P3 may take different colors, and the second coloring materials 170 included in the plurality of the pixels P1, P2 and P3 may take the same color. However, the inventive concept is not limited thereto.
[0079] According to the inventive concept, one pixel may include liquid crystals provided in a polymer, a first coloring material dispersed in the polymer, and a second coloring material dispersed in the liquid crystals. The first coloring material and the second coloring material may take different colors. By controlling the arrangement of the second coloring material dispersed in the liquid crystals using a voltage applied to the pixel, the different colors of the pixels may be attained. Therefore, a color display device securing good visibility with a low power consumption may be provided.
[0080] According to the inventive concept, one pixel may include liquid crystals provided in a polymer, a first coloring material dispersed in the polymer, and a second coloring material dispersed in the liquid crystals. The first coloring material and the second coloring material may present different colors. By controlling the orientation of the second coloring material dispersed in the liquid crystals using a voltage applied to the pixel, the different color of the pixel may be attained. A color display device securing good visibility with low power consumption may be provided.
[0081] Although the exemplary embodiments of the present invention have been described, it is understood that the present invention should not be limited to these exemplary embodiments but various changes and modifications can be made by one ordinary skilled in the art within the spirit and scope of the present invention as hereinafter claimed.