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NOVEL POLYMER WIDE VIEWING ANGLE COMPENSATION FILMS FOR LIQUID CRYSTAL DISPLAYS(LCDS)
作者姓名:Jason J.Ge  Bruce F.Li  Frank W.Harris  Stephen Z.D.Cheng
作者单位:The Maurice Morton Institute and Department of Polymer Science,The University of Akron,Akron,Ohio 44325-3909,USA,The Maurice Morton Institute and Department of Polymer Science,The University of Akron,Akron,Ohio 44325-3909,USA,The Maurice Morton Institute and Department of Polymer Science,The University of Akron,Akron,Ohio 44325-3909,USA,The Maurice Morton Institute and Department of Polymer Science,The University of Akron,Akron,Ohio 44325-3909,USA
基金项目:This work was supported by the NSF Science and Technology Center of Advanced Liquid Crystalline Optical Materials (ALCOM, DMR-91-57738) and Nitto Denko America as well as NSF DMR0203994.
摘    要:We report on generating uniaxial negative birefringent compensation films, made of specifically designedpolyimides. These polymers were synthesized via a polycondensation of dianhydride such as 2, 2' -bis(3, 4-dicarboxyphenyl)hexafluoropropane dianhydride] and 2, 2'-bis(trifluoromethyl)-4,4'-diaminobiphenyl. The uniaxial negative birefringent (n_x =n_y > n_z) polyimide substrates are achieved using a solution-casting method in conventional solvents, which exhibit thedesirable optical phase retardation (n_x - n_z)×d] values from 50 to 400 nm varying with the film thickness. In thesepolyimide films, the long chain rigid molecules adopt intrinsic planar orientaion. In detail, the majority of phenylene-imiderings and phenylenes preferentially adopt nearly planar conformations parallel to the film substrae. In addition, these filmsalso possess high transparency (or transmittance) and little color shift. The unique color dispersion curve indicates that thistype of materials is very suitable for the applications in LCDs due to an excellent mimic for the retardation color dispersioncurve with respect to LC molecules. Significantly low in-plane retardation (< 1 nm) allows this new technology based film toachieve sufficiently high contrast ratio while highly negative retardation dramatically suppresses the gray scale inversion toimprove the viewing angle performance in a variety of new mode LCDs.

收稿时间:2002-08-31

NOVEL POLYMER WIDE VIEWING ANGLE COMPENSATION FILMS FOR LIQUID CRYSTAL DISPLAYS(LCDS)*
Jason J.Ge,Bruce F.Li,Frank W.Harris,Stephen Z.D.Cheng.NOVEL POLYMER WIDE VIEWING ANGLE COMPENSATION FILMS FOR LIQUID CRYSTAL DISPLAYS(LCDS)[J].Chinese Journal of Polymer Science,2003,0(2):223-230.
Authors:Jason J Ge  Bruce F Li  Frank W Harris  Stephen ZD Cheng
Institution:The Maurice Morton Institute and Department of Polymer Science; The University of Akron; Akron; Ohio 44325-3909 USA
Abstract: We report on generating uniaxial negative birefringent compensation films, made of specifically designedpolyimides. These polymers were synthesized via a polycondensation of dianhydride such as 2, 2' -bis(3, 4-dicarboxyphenyl)hexafluoropropane dianhydride] and 2, 2'-bis(trifluoromethyl)-4,4'-diaminobiphenyl. The uniaxial negative birefringent (nx =ny > nz) polyimide substrates are achieved using a solution-casting method in conventional solvents, which exhibit the desirable optical phase retardation (nx-nzd] values from 50 to 400 nm varying with the film thickness.In these polyimide films,the long chain rigid molecules adopt intrinsic planar orientation.In detail,the majority of phenylene-imide rings and phenylenes preferentially adopt nearly planar conformations parallel to the film substrate.In addition,these films also possess high transparency(or transmittance) and little color shift.The unique color dispersion curve indicates that this type of materials is very suitable for the applications in LCDs due to an excellent mimic for the retardation color dispersion curve with respect to LC molecules.Significantly low in-plane retardation(<1 nm) allows this new technology based film to achieve sufficiently high contrast ratio while highly negative retardation dramatically suppresses the gray scale inversion to improve the viewing angle performance in a variety of new mode LCDs.
Keywords:Compensation films  Liquid crystal displays  Polyimides
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