CN105044970A - 偏光与彩色滤光功能整合膜的制备方法及液晶显示面板 - Google Patents
偏光与彩色滤光功能整合膜的制备方法及液晶显示面板 Download PDFInfo
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Abstract
本发明提供一种偏光与彩色滤光功能整合膜的制备方法及液晶显示面板,所述制备方法制得的偏光与彩色滤光功能整合膜兼具有偏光特性和彩色滤光功能,将该偏光与彩色滤光功能整合膜应用于液晶显示面板中时,可取代现有液晶显示面板中的下偏光片及RGB彩色光阻层,很大程度上简化生产工艺,节省生产成本,形成成本下降的效益。本发明液晶显示面板使用兼具有偏光特性和彩色滤光功能的偏光与彩色滤光功能整合膜取代现有液晶显示面板中的下偏光片及RGB彩色光阻层,很大程度上简化生产工艺,降低了生产成本。
Description
技术领域
本发明涉及显示技术领域,尤其涉及一种偏光与彩色滤光功能整合膜的制备方法及含有该偏光与彩色滤光功能整合膜的液晶显示面板。
背景技术
液晶显示装置(LCD,LiquidCrystalDisplay)具有机身薄、省电、无辐射等众多优点,得到了广泛的应用。现有市场上的液晶显示装置大部分为背光型液晶显示装置,其包括液晶显示面板及背光模组(backlightmodule)。通常液晶显示面板由彩膜基板(CF,ColorFilter)、薄膜晶体管基板(TFT,ThinFilmTransistor)、夹于彩膜基板与薄膜晶体管基板之间的液晶(LC,LiquidCrystal)及密封胶框(Sealant)组成;其成型工艺一般包括:前段阵列(Array)制程(薄膜、黄光、蚀刻及剥膜)、中段成盒(Cell)制程(薄膜晶体管基板与彩色滤光膜基板贴合)及后段模组组装制程(驱动电路(IC)与印刷电路板压合)。其中,前段阵列(Array)制程主要是形成薄膜晶体管基板,以便于控制液晶分子的运动;中段成盒(Cell)制程主要是在薄膜晶体管基板与彩色滤光膜基板之间添加液晶;后段模组组装制程主要是驱动电路压合与印刷电路板的整合,进而驱动液晶分子转动,显示图像。
液晶显示面板的工作原理是在两片平行的玻璃基板当中放置液晶分子,通过玻璃基板通电与否来控制液晶分子取向,改变背光模组的光线的偏振状态,并藉由液晶显示面板两侧设置的偏光板实现光路的穿透与阻挡,达到控制透光量的目的;通过RGB彩色光阻层将透过液晶层的光线进行过滤吸收,使得每个像素的光在射出后都是由三原色(RGB)构成,不同的像素对应发出不同颜色的光,利用空间混色原理,从而实现全彩显示。可见,偏振光和RGB三原色是其显示原理得以实现最重要的两个要素。
现在常用的偏光片只具有偏光的功能,主要有碘系和染料系,其制作原理为将聚乙烯醇(polyvinylalcohol,PVA)等高分子膜浸泡于含多价碘离子或偏光染料的溶液中,再将PVA高分子以单一轴方向拉伸;PVA分子受外力拉伸后会在一个方向上排列,促使吸附在PVA分子上的碘分子或染料分子和PVA分子同方向排列;拉伸后的细长碘分子或染料分子会吸收平行于碘分子长轴方向振动的光,透过垂直于碘分子长轴方向振动的光,即得到能够形成偏振光的偏光片。
现有的液晶显示面板,偏振光是由偏光片形成的,而RGB三原色则由RGB彩色光阻层提供,需要使用上下两片偏光片,TFT基板或CF基板上需要设置RGB彩色光阻层,结构及制程复杂,制作成本高。
发明内容
本发明的目的在于提供一种偏光与彩色滤光功能整合膜的制备方法,制得的偏光与彩色滤光功能整合膜兼具有偏光特性和彩色滤光功能,将该偏光与彩色滤光功能整合膜应用于液晶显示面板中时,可取代现有液晶显示面板中的下偏光片及RGB彩色光阻膜,很大程度上简化生产工艺,节省生产成本,形成成本下降的效益。
本发明的另一目的在于提供一种液晶显示面板,使用兼具有偏光特性和彩色滤光功能的偏光与彩色滤光功能整合膜取代现有液晶显示面板中的下偏光片及RGB彩色光阻膜,很大程度上简化生产工艺,节省生产成本,形成成本下降的效益。
为实现上述目的,本发明提供一种偏光与彩色滤光功能整合膜的制备方法,包括以下步骤:
步骤1、提供二色性染料、聚乙烯醇、及溶剂,将所述二色性染料与聚乙烯醇溶解于溶剂中,形成喷墨液;
所述二色性染料包括红色二色性染料、绿色二色性染料、及蓝色二色性染料,从而分别用于形成红色喷墨液、绿色喷墨液、及蓝色喷墨液;
步骤2、提供一基板,根据预定的子像素图案将所述红色喷墨液、绿色喷墨液、及蓝色喷墨液喷印于基板上,从而形成具有红色子像素图案、绿色子像素图案、及蓝色子像素图案的染料膜;
步骤3、对所述染料膜进行预烘烤,以除去膜内的大部分溶剂;
步骤4、对所述染料膜进行摩擦处理,借助摩擦的机械配相力,使得染料膜内的二色性染料分子沿着聚乙烯醇分子在摩擦的方向定向排列;
步骤5、对所述染料膜进行进一步烘烤,固化,得到偏光与彩色滤光功能整合膜。
所述步骤1中,所述二色性染料为偶氮类染料、或蒽醌类染料;
所述蒽醌类染料的分子式结构为其中,R为饱和或不饱和烷基;
所述偶氮类染料为单偶氮类染料、双偶氮类染料、或多偶氮类染料。
所述单偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2;
所述双偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2,R4为Cl、Br、或CN;
所述多偶氮类染料为主链结构含三个或三个以上结构的偶氮化合物。
本发明还提供一种偏光与彩色滤光功能整合膜的制备方法,包括以下步骤:
步骤1、在基板上涂布一层光敏性聚合物,通过偏振紫外光照射该光敏性聚合物使之发生光化学反应,形成具有各向异性的光敏性聚合物膜;
步骤2、提供二色性染料与溶剂,将所述二色性染料溶解于溶剂中,形成染料溶液;
所述二色性染料包括红色二色性染料、绿色二色性染料、及蓝色二色性染料,从而分别用于形成红色染料溶液、绿色染料溶液、及蓝色染料溶液;
步骤3、根据预定的子像素图案将所述红色染料溶液、绿色染料溶液、及蓝色染料溶液喷印或涂布于所述光敏性聚合物膜上,从而形成具有红色子像素图案、绿色子像素图案、及蓝色子像素图案的染料膜;所述光敏性聚合物膜中经过光处理过的光敏性聚合物诱导所述染料膜中的二色性染料分子实现定向排列;
步骤4、对所述染料膜进烘烤,以除去膜内的溶剂并固化,得到偏光与彩色滤光功能整合膜。
所述步骤1中,所述二色性染料为偶氮类染料、或蒽醌类染料;
所述蒽醌类染料的分子式结构为其中,R为饱和或不饱和烷基;
所述偶氮类染料为单偶氮类染料、双偶氮类染料、或多偶氮类染料。
所述单偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2;
所述双偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2,R4为Cl、Br、或CN;
所述多偶氮类染料为主链结构含三个或三个以上结构的偶氮化合物。
本发明还提供一种液晶显示面板,包括相对设置的上基板与下基板、设于上基板上方的上偏光片、及设于所述上基板与下基板之间的液晶层;
所述上基板包括第一基板、设于所述第一基板上的黑色矩阵、设于黑色矩阵上的光阻间隙物、设于所述第一基板及黑色矩阵上的公共电极、设于所述公共电极上的第一配向膜;
所述下基板包括第二基板、设于所述第二基板上的薄膜晶体管层、及设于所述薄膜晶体管层上的钝化层上的偏光与彩色滤光功能整合膜、设于所述偏光与彩色滤光功能染料膜上的像素电极,设于所述像素电极上的第二配向膜。
所述钝化层与所述偏光与彩色滤光功能整合膜之间设有平坦化层。
所述偏光与彩色滤光功能整合膜包括红色子像素图案、绿色子像素图案、及蓝色子像素图案,所述红色子像素图案的材料为红色二色性染料与聚乙烯醇的混合物,所述绿色子像素图案的材料为绿色二色性染料与聚乙烯醇的混合物,所述蓝色子像素图案的材料为蓝色二色性染料与聚乙烯醇的混合物。
所述偏光与彩色滤光功能整合膜包括一光敏性聚合物膜及设于所述光敏性聚合物膜上的染料膜,所述染料膜包括红色子像素图案、绿色子像素图案、及蓝色子像素图案,所述红色子像素图案的材料为红色二色性染料,所述绿色子像素图案的材料为绿色二色性染料,所述蓝色子像素图案的材料为蓝色二色性染料。
本发明的有益效果:本发明提供一种偏光与彩色滤光功能整合膜的制备方法及含有该偏光与彩色滤光功能整合膜的液晶显示面板,所述制备方法制得的偏光与彩色滤光功能整合膜兼具有偏光特性和彩色滤光功能,将该偏光与彩色滤光功能整合膜应用于液晶显示面板中时,可取代现有液晶显示面板中的下偏光片及RGB彩色光阻层,很大程度上简化生产工艺,节省生产成本,形成成本下降的效益。本发明提供的一种液晶显示面板,使用兼具有偏光特性和彩色滤光功能的偏光与彩色滤光功能整合膜取代现有液晶显示面板中的下偏光片及RGB彩色光阻层,很大程度上简化生产工艺,节省生产成本,形成成本下降的效益。
附图说明
下面结合附图,通过对本发明的具体实施方式详细描述,将使本发明的技术方案及其他有益效果显而易见。
附图中,
图1为本发明的一种偏光与彩色滤光功能整合膜的制备方法的示意流程图;
图2为图1的偏光与彩色滤光功能整合膜的制备方法步骤2的示意图;
图3为图1的偏光与彩色滤光功能整合膜的制备方法步骤4的示意图;
图4为本发明的另一种偏光与彩色滤光功能整合膜的制备方法的示意流程图;
图5为本发明的液晶显示面板第一实施例的剖面结构示意图;
图6为本发明的液晶显示面板第二实施例的剖面结构示意图。
具体实施方式
为更进一步阐述本发明所采取的技术手段及其效果,以下结合本发明的优选实施例及其附图进行详细描述。
请参阅图1,本发明首先提供一种偏光与彩色滤光功能整合膜的制备方法,包括以下步骤:
步骤1、提供二色性染料、聚乙烯醇、及溶剂,将所述二色性染料与聚乙烯醇溶解于溶剂中,形成喷墨液;
所述二色性染料包括红色二色性染料、绿色二色性染料、及蓝色二色性染料,从而分别用于形成红色喷墨液、绿色喷墨液、及蓝色喷墨液;
步骤2、如图2所示,提供一基板20,根据预定的子像素图案将所述红色喷墨液、绿色喷墨液、及蓝色喷墨液喷印于基板上,从而形成具有红色子像素图案101、绿色子像素图案102、及蓝色子像素图案103的染料膜100;
具体的,所述基板20可以为TFT基板;
步骤3、对所述染料膜100进行预烘烤,以除去膜内的大部分溶剂;
步骤4、如图3所示,对所述染料膜100进行摩擦处理,借助摩擦的机械配相力,使得染料膜100内的二色性染料分子沿着聚乙烯醇分子在摩擦的方向定向排列;
步骤5、对所述染料膜100进行进一步烘烤,固化,得到偏光与彩色滤光功能整合膜。
具体的,所述步骤1中,所述二色性染料为偶氮类染料、或蒽醌类染料;
所述蒽醌类染料为主体结构含有的化合物,进一步的,所述蒽醌类染料的分子式结构可以为其中,R为饱和或不饱和烷基;
所述偶氮类染料为单偶氮类染料、双偶氮类染料、或多偶氮类染料。
具体的,所述单偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2;
具体的,所述双偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2,R4为Cl、Br、或CN;
具体的,所述多偶氮类染料为主链结构含三个或三个以上结构的偶氮化合物。
基于上述偏光与彩色滤光功能整合膜的制备方法,本发明还提供一种偏光与彩色滤光功能整合膜,其包括红色子像素图案101、绿色子像素图案102、及蓝色子像素图案103,所述红色子像素图案101的材料为红色二色性染料与聚乙烯醇的混合物,所述绿色子像素图案102的材料为绿色二色性染料与聚乙烯醇的混合物,所述蓝色子像素图案103的材料为蓝色二色性染料与聚乙烯醇的混合物。
请参阅图4,本发明还提供另一种偏光与彩色滤光功能整合膜的制备方法,包括以下步骤:
步骤1、在基板上涂布一层光敏性聚合物,通过偏振紫外光照射该光敏性聚合物使之发生光化学反应,形成具有各向异性的光敏性聚合物膜;
优选的,所述光敏性聚合物为聚乙烯醇(PVA);
步骤2、提供二色性染料与溶剂,将所述二色性染料溶解于溶剂中,形成染料溶液;
所述二色性染料包括红色二色性染料、绿色二色性染料、及蓝色二色性染料,从而分别用于形成红色染料溶液、绿色染料溶液、及蓝色染料溶液;
步骤3、根据预定的子像素图案将所述红色染料溶液、绿色染料溶液、及蓝色染料溶液喷印或涂布于所述光敏性聚合物膜上,从而形成具有红色子像素图案、绿色子像素图案、及蓝色子像素图案的染料膜;所述光敏性聚合物膜中经过光处理过的光敏性聚合物诱导所述染料膜中的二色性染料分子实现定向排列;
步骤4、对所述染料膜进烘烤,以除去膜内的溶剂并固化,得到偏光与彩色滤光功能整合膜。
具体的,所述步骤1中,所述二色性染料为偶氮类染料、或蒽醌类染料;
所述蒽醌类染料为主体分子结构含有结构的化合物,进一步的,所述蒽醌类染料的分子式结构为其中,R为饱和或不饱和烷基;
所述偶氮类染料为单偶氮类染料、双偶氮类染料、或多偶氮类染料。
具体的,所述单偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2;
具体的,所述双偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2,R4为Cl、Br、或CN;
具体的,所述多偶氮类染料为主链结构含三个或三个以上结构的偶氮化合物。
基于上述偏光与彩色滤光功能整合膜的制备方法,本发明还提供一种偏光与彩色滤光功能整合膜,其包括一光敏性聚合物膜、及设于所述光敏性聚合物膜上的染料膜,所述染料膜包括红色子像素图案、绿色子像素图案、及蓝色子像素图案,所述红色子像素图案的材料为红色二色性染料,所述绿色子像素图案的材料为绿色二色性染料,所述蓝色子像素图案的材料为蓝色二色性染料。
请参阅图5,为本发明液晶显示面板的第一实施例,所述液晶显示面板包括相对设置的上基板1与下基板2、设于上基板1上方的上偏光片4、及设于所述上基板1与下基板2之间的液晶层3。
具体的,所述上基板1包括第一基板11、设于所述第一基板11上的黑色矩阵12、设于黑色矩阵12上的光阻间隙物13、设于所述第一基板11及黑色矩阵12上的公共电极14、设于所述公共电极14上的第一配向膜15;
所述下基板2包括第二基板21、设于所述第二基板21上的薄膜晶体管层22、及设于所述薄膜晶体管层22上的钝化层23、设于所述钝化层23上的平坦化层24、设于所述平坦化层24上的偏光与彩色滤光功能整合膜25、设于所述偏光与彩色滤光功能染料膜25上的像素电极26,设于所述像素电极26上的第二配向膜27。
具体的,所述偏光与彩色滤光功能整合膜25可以为以下两种结构之一:
(Ⅰ)所述偏光与彩色滤光功能整合膜25包括红色子像素图案、绿色子像素图案、及蓝色子像素图案,所述红色子像素图案的材料为红色二色性染料与聚乙烯醇的混合物,所述绿色子像素图案的材料为绿色二色性染料与聚乙烯醇的混合物,所述蓝色子像素图案的材料为蓝色二色性染料与聚乙烯醇的混合物。
(Ⅱ)所述偏光与彩色滤光功能整合膜25包括一光敏性聚合物膜及设于所述光敏性聚合物膜上的染料膜,所述染料膜包括红色子像素图案、绿色子像素图案、及蓝色子像素图案,所述红色子像素图案的材料为红色二色性染料,所述绿色子像素图案的材料为绿色二色性染料,所述蓝色子像素图案的材料为蓝色二色性染料。
具体的,所述第一基板11与第二基板21均为玻璃基板。
请参阅图6,为本发明液晶显示面板的第二实施例,与第一实施例相比,其不同之处在于,所述薄膜晶体管层22与所述偏光与彩色滤光功能整合膜25之间仅设置钝化层23,未设置平坦层24,所述钝化层23的厚度较大,在保护薄膜晶体管层22同时起到了平坦化的作用。
综上所述,本发明提供一种偏光与彩色滤光功能整合膜的制备方法及含有该偏光与彩色滤光功能整合膜的液晶显示面板,所述制备方法制得的偏光与彩色滤光功能整合膜兼具有偏光特性和彩色滤光功能,将该偏光与彩色滤光功能整合膜应用于液晶显示面板中时,可取代现有液晶显示面板中的下偏光片及RGB彩色光阻层,很大程度上简化生产工艺,节省生产成本,形成成本下降的效益。本发明提供的一种液晶显示面板,使用兼具有偏光特性和彩色滤光功能的偏光与彩色滤光功能整合膜取代现有液晶显示面板中的下偏光片及RGB彩色光阻层,很大程度上简化生产工艺,节省生产成本,形成成本下降的效益。
以上所述,对于本领域的普通技术人员来说,可以根据本发明的技术方案和技术构思作出其他各种相应的改变和变形,而所有这些改变和变形都应属于本发明后附的权利要求的保护范围。
Claims (10)
1.一种偏光与彩色滤光功能整合膜的制备方法,其特征在于,包括以下步骤:
步骤1、提供二色性染料、聚乙烯醇、及溶剂,将所述二色性染料与聚乙烯醇溶解于溶剂中,形成喷墨液;
所述二色性染料包括红色二色性染料、绿色二色性染料、及蓝色二色性染料,从而分别用于形成红色喷墨液、绿色喷墨液、及蓝色喷墨液;
步骤2、提供一基板(20),根据预定的子像素图案将所述红色喷墨液、绿色喷墨液、及蓝色喷墨液喷印于基板上,从而形成具有红色子像素图案(101)、绿色子像素图案(102)、及蓝色子像素图案(103)的染料膜(100);
步骤3、对所述染料膜(100)进行预烘烤,以除去膜内的大部分溶剂;
步骤4、对所述染料膜(100)进行摩擦处理,借助摩擦的机械配相力,使得染料膜(100)内的二色性染料分子沿着聚乙烯醇分子在摩擦的方向定向排列;
步骤5、对所述染料膜(100)进行进一步烘烤,固化,得到偏光与彩色滤光功能整合膜。
2.如权利要求1所述的偏光与彩色滤光功能整合膜的制备方法,其特征在于,所述步骤1中,所述二色性染料为偶氮类染料、或蒽醌类染料;
所述蒽醌类染料的分子式结构为其中,R为饱和或不饱和烷基;
所述偶氮类染料为单偶氮类染料、双偶氮类染料、或多偶氮类染料。
3.如权利要求2所述的偏光与彩色滤光功能整合膜的制备方法,其特征在于,所述单偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2;
所述双偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2,R4为Cl、Br、或CN;
所述多偶氮类染料为主链结构含三个或三个以上结构的偶氮化合物。
4.一种偏光与彩色滤光功能整合膜的制备方法,其特征在于,包括以下步骤:
步骤1、在基板上涂布一层光敏性聚合物,通过偏振紫外光照射该光敏性聚合物使之发生光化学反应,形成具有各向异性的光敏性聚合物膜;
步骤2、提供二色性染料与溶剂,将所述二色性染料溶解于溶剂中,形成染料溶液;
所述二色性染料包括红色二色性染料、绿色二色性染料、及蓝色二色性染料,从而分别用于形成红色染料溶液、绿色染料溶液、及蓝色染料溶液;
步骤3、根据预定的子像素图案将所述红色染料溶液、绿色染料溶液、及蓝色染料溶液喷印或涂布于所述光敏性聚合物膜上,从而形成具有红色子像素图案、绿色子像素图案、及蓝色子像素图案的染料膜;所述光敏性聚合物膜中经过光处理过的光敏性聚合物诱导所述染料膜中的二色性染料分子实现定向排列;
步骤4、对所述染料膜进烘烤,以除去膜内的溶剂并固化,得到偏光与彩色滤光功能整合膜。
5.如权利要求4所述的偏光与彩色滤光功能整合膜的制备方法,其特征在于,所述步骤1中,所述二色性染料为偶氮类染料、或蒽醌类染料;
所述蒽醌类染料的分子式结构为其中,R为饱和或不饱和烷基;
所述偶氮类染料为单偶氮类染料、双偶氮类染料、或多偶氮类染料。
6.如权利要求5所述的偏光与彩色滤光功能整合膜的制备方法,其特征在于,所述单偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2;
所述双偶氮类染料的分子结构式为其中R1,R2为CH3、C2H5、C3H7、或C4H9,R3为NO2、C4H9、SO2、C3H7、Br、CN或NH2,R4为Cl、Br、或CN;
所述多偶氮类染料为主链结构含三个或三个以上结构的偶氮化合物。
7.一种液晶显示面板,其特征在于,包括相对设置的上基板(1)与下基板(2)、设于上基板(1)上方的上偏光片(4)、及设于所述上基板(1)与下基板(2)之间的液晶层(3);
所述上基板(1)包括第一基板(11)、设于所述第一基板(11)上的黑色矩阵(12)、设于黑色矩阵(12)上的光阻间隙物(13)、设于所述第一基板(11)及黑色矩阵(12)上的公共电极(14)、设于所述公共电极(14)上的第一配向膜(15);
所述下基板(2)包括第二基板(21)、设于所述第二基板(21)上的薄膜晶体管层(22)、及设于所述薄膜晶体管层(22)上的钝化层(23)上的偏光与彩色滤光功能整合膜(25)、设于所述偏光与彩色滤光功能染料膜(25)上的像素电极(26),设于所述像素电极(26)上的第二配向膜(27)。
8.如权利要求7所述的液晶显示面板,其特征在于,所述钝化层(23)与所述偏光与彩色滤光功能整合膜(25)之间设有平坦化层(24)。
9.如权利要求7所述的液晶显示面板,其特征在于,所述偏光与彩色滤光功能整合膜(25)包括红色子像素图案、绿色子像素图案、及蓝色子像素图案,所述红色子像素图案的材料为红色二色性染料与聚乙烯醇的混合物,所述绿色子像素图案的材料为绿色二色性染料与聚乙烯醇的混合物,所述蓝色子像素图案的材料为蓝色二色性染料与聚乙烯醇的混合物。
10.如权利要求7所述的液晶显示面板,其特征在于,所述偏光与彩色滤光功能整合膜(25)包括一光敏性聚合物膜及设于所述光敏性聚合物膜上的染料膜,所述染料膜包括红色子像素图案、绿色子像素图案、及蓝色子像素图案,所述红色子像素图案的材料为红色二色性染料,所述绿色子像素图案的材料为绿色二色性染料,所述蓝色子像素图案的材料为蓝色二色性染料。
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CN106959544A (zh) * | 2016-01-08 | 2017-07-18 | 京东方科技集团股份有限公司 | 一种背光模组、液晶显示器及其制备工艺 |
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