会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Negative light sensitive resin composition, color filter and liquid crystal display device
    • 负光敏树脂组合物,滤色片和液晶显示装置
    • US09140982B2
    • 2015-09-22
    • US13700479
    • 2012-08-01
    • Jisheng ZhaoLin LiShi Shu
    • Jisheng ZhaoLin LiShi Shu
    • C09K19/00G03F7/038G02B5/20G03F7/00G03F7/027
    • G03F7/038G02B5/20G02B5/201G03F7/0007G03F7/027G03F7/0388Y10T428/1036Y10T428/1082
    • Embodiments of the invention provide a negative light sensitive resin composition, a color filter and a liquid crystal display device. The negative light sensitive resin composition comprises: an alkaline soluble resin, which is a terpolymer, or a derivative of the terpolymer, made from the following three monomers: styrene, α-pinene, and a carboxylic acid or anhydride containing an unsaturated double bond; a light sensitive resin containing ethylene unsaturated double bonds, which is in a mass ratio of 0.1 to 1.2:1 to the alkaline soluble resin; a photoinitiator, which is in a mass ratio of 0.0001 to 0.001:1 to the composition; a modifying adjuvant, which is in a mass ratio of 0.001 to 0.01:1 to the solid fraction in the composition; and a solvent, which is in a mass ratio of 2 to 20:1 to the solid fraction in the composition. The color filter and the liquid crystal display device comprise a light filter structure formed by the curing of the aforementioned negative light sensitive resin composition.
    • 本发明的实施方案提供负光敏树脂组合物,滤色器和液晶显示装置。 负性光敏树脂组合物包括:由以下三种单体制成的三元共聚物的碱性可溶性树脂或三元共聚物的衍生物:苯乙烯,α-蒎烯和含有不饱和双键的羧酸或酸酐; 含有乙烯不饱和双键的光敏树脂与碱溶性树脂的质量比为0.1〜1.2:1; 与组合物的质量比为0.0001〜0.001:1的光引发剂; 与组合物中的固体成分质量比为0.001〜0.01:1的改性佐剂; 和与组合物中固体成分质量比为2〜20:1的溶剂。 滤色器和液晶显示装置包括通过上述负光敏树脂组合物的固化形成的滤光器结构。
    • 4. 发明申请
    • METHOD FOR PREPARATION OF AQUEOUS NANO-PIGMENT DISPERSION
    • 制备水性纳米颜料分散体的方法
    • US20130099183A1
    • 2013-04-25
    • US13643369
    • 2012-07-11
    • Shi ShuJiuxia YangJisheng ZhaoLin Li
    • Shi ShuJiuxia YangJisheng ZhaoLin Li
    • G02B5/23
    • G02B5/23C08F2/24C08F2/44C08F212/08C08F2220/1825C08F220/14C08F2222/1013C08F2220/1858
    • Embodiments of the invention disclose a method for preparing an aqueous nano-pigment dispersion. The method comprises mixing 2.5 wt %˜40 wt % styrene with polymerization inhibitors removed by evaporation, 2.5 wt %˜20 wt % acrylate monomer, 0.25 wt %˜5 wt % crosslinking monomer, 0.05 wt %˜0.5 wt % emulsification adjuvant, and 0.05 wt %˜0.5 wt % oil soluble initiator, adding 0.25 wt %˜2.5 wt % organic pigments to be dispersed to form an oil phase solution after dissolution; dissolving 0.05 wt %˜2 wt % emulsifier and 0.05 wt %˜2 wt % buffer in 40 wt % wt˜90 wt % deionized water to form an aqueous solution; mixing the oil phase solution and the aqueous phase solution, and then homogenizing them into fine emulsion; transferring the fine emulsion into a reactor; heating to increase the temperature to initiate the polymerization; after reacting, adding an alkaline soluble monomer; after continuing the reaction, cooling the temperature to the room temperature; adjusting pH to weak alkaline; and filtering to obtain the aqueous nano-pigment dispersion.
    • 本发明的实施方案公开了一种制备水性纳米颜料分散体的方法。 该方法包括将2.5重量%〜40重量%的苯乙烯与通过蒸发除去的聚合抑制剂,2.5重量%〜20重量%的丙烯酸酯单体,0.25重量%〜5重量%的交联单体,0.05重量%〜0.5重量%的乳化助剂和 0.05重量%〜0.5重量%的油溶性引发剂,加入0.25重量%〜2.5重量%的有机颜料进行分散以形成溶解后的油相溶液; 在40重量%〜90重量%的去离子水中溶解0.05重量%〜2重量%的乳化剂和0.05重量%〜2重量%的缓冲液以形成水溶液; 混合油相溶液和水相溶液,然后均化成细乳液; 将细乳液转移到反应器中; 加热以增加温度以引发聚合; 反应后加入碱溶性单体; 继续反应后,将温度降至室温; 将pH调节至弱碱性; 并过滤以获得水性纳米颜料分散体。
    • 5. 发明授权
    • Display device
    • 显示设备
    • US09448400B2
    • 2016-09-20
    • US13469533
    • 2012-05-11
    • Xiaoxiong TianJianshe XueJisheng ZhaoLin LiShi Shu
    • Xiaoxiong TianJianshe XueJisheng ZhaoLin LiShi Shu
    • G09G3/34G02B26/02
    • G02B26/026
    • An embodiment of the disclosed technology provides a display device comprising an electrophoresis solution tank containing electrophoresis solution and at least a rolling ball used for display colors, the rolling ball being immerged into the electrophoresis solution; and a shelter layer disposed above and covering the electrophoresis solution tank, the shelter layer being made up of an opaque material. A light transmitting hole is formed in the shelter layer and above the core of the rolling ball, so that the light of the color to be currently displayed on the rolling ball passes through the light transmitting hole for display, while the light of the colors not intended to be displayed is blocked by the shelter layer.
    • 所公开技术的一个实施例提供了一种显示装置,其包括含有电泳溶液的电泳溶液罐和至少一个用于显示颜色的滚球,所述滚球浸入电泳溶液中; 以及设置在电泳溶液罐上方并覆盖电泳溶液罐的防护层,防护层由不透明材料构成。 遮蔽层和滚珠的芯部之上形成透光孔,使得当前显示在滚珠上的颜色的光通过用于显示的透光孔,而不是颜色的光 旨在显示被遮蔽层阻挡。
    • 6. 发明申请
    • NEGATIVE LIGHT SENSITIVE RESIN COMPOSITION, COLOR FILTER AND LIQUID CRYSTAL DISPLAY DEVICE
    • 负性感光树脂组合物,彩色滤光片和液晶显示装置
    • US20130129941A1
    • 2013-05-23
    • US13700479
    • 2012-08-01
    • Jisheng ZhaoLin LiShi Shu
    • Jisheng ZhaoLin LiShi Shu
    • G03F7/038
    • G03F7/038G02B5/20G02B5/201G03F7/0007G03F7/027G03F7/0388Y10T428/1036Y10T428/1082
    • Embodiments of the invention provide a negative light sensitive resin composition, a color filter and a liquid crystal display device. The negative light sensitive resin composition comprises: an alkaline soluble resin, which is a terpolymer, or a derivative of the terpolymer, made from the following three monomers: styrene, α-pinene, and a carboxylic acid or anhydride containing an unsaturated double bond; a light sensitive resin containing ethylene unsaturated double bonds, which is in a mass ratio of 0.1 to 1.2:1 to the alkaline soluble resin; a photoinitiator, which is in a mass ratio of 0.0001 to 0.001:1 to the composition; a modifying adjuvant, which is in a mass ratio of 0.001 to 0.01:1 to the solid fraction in the composition; and a solvent, which is in a mass ratio of 2 to 20:1 to the solid fraction in the composition. The color filter and the liquid crystal display device comprise a light filter structure formed by the curing of the aforementioned negative light sensitive resin composition.
    • 本发明的实施方案提供负光敏树脂组合物,滤色器和液晶显示装置。 负性光敏树脂组合物包括:由以下三种单体制成的三元共聚物的碱性可溶性树脂或三元共聚物的衍生物:苯乙烯,α-蒎烯和含有不饱和双键的羧酸或酸酐; 含有乙烯不饱和双键的光敏树脂与碱溶性树脂的质量比为0.1〜1.2:1; 与组合物的质量比为0.0001〜0.001:1的光引发剂; 与组合物中的固体成分质量比为0.001〜0.01:1的改性佐剂; 和与组合物中固体成分质量比为2〜20:1的溶剂。 滤色器和液晶显示装置包括通过上述负光敏树脂组合物的固化形成的滤光器结构。
    • 7. 发明授权
    • Method for preparation of aqueous nano-pigment dispersion
    • 水性纳米颜料分散体的制备方法
    • US08951449B2
    • 2015-02-10
    • US13643369
    • 2012-07-11
    • Shi ShuJiuxia YangJisheng ZhaoLin Li
    • Shi ShuJiuxia YangJisheng ZhaoLin Li
    • G02B5/23C08F2/44C08F212/08C08F2/24B05D5/06G02B6/02
    • G02B5/23C08F2/24C08F2/44C08F212/08C08F2220/1825C08F220/14C08F2222/1013C08F2220/1858
    • Embodiments of the invention disclose a method for preparing an aqueous nano-pigment dispersion. The method comprises mixing 2.5 wt %˜40 wt % styrene with polymerization inhibitors removed by evaporation, 2.5 wt %˜20 wt % acrylate monomer, 0.25 wt %˜5 wt % crosslinking monomer, 0.05 wt %˜0.5 wt % emulsification adjuvant, and 0.05 wt %˜0.5 wt % oil soluble initiator, adding 0.25 wt %˜2.5 wt % organic pigments to be dispersed to form an oil phase solution after dissolution; dissolving 0.05 wt %˜2 wt % emulsifier and 0.05 wt %˜2 wt % buffer in 40 wt % wt˜90 wt % deionized water to form an aqueous solution; mixing the oil phase solution and the aqueous phase solution, and then homogenizing them into fine emulsion; transferring the fine emulsion into a reactor; heating to increase the temperature to initiate the polymerization; after reacting, adding an alkaline soluble monomer; after continuing the reaction, cooling the temperature to the room temperature; adjusting pH to weak alkaline; and filtering to obtain the aqueous nano-pigment dispersion.
    • 本发明的实施方案公开了一种制备水性纳米颜料分散体的方法。 该方法包括将2.5重量%〜40重量%的苯乙烯与通过蒸发除去的聚合抑制剂,2.5重量%〜20重量%的丙烯酸酯单体,0.25重量%〜5重量%的交联单体,0.05重量%〜0.5重量%的乳化助剂和 0.05重量%〜0.5重量%的油溶性引发剂,加入0.25重量%〜2.5重量%的有机颜料进行分散以形成溶解后的油相溶液; 将0.05重量%〜2重量%的乳化剂和0.05重量%〜2重量%的缓冲液溶解在40重量%〜90重量%的去离子水中以形成水溶液; 混合油相溶液和水相溶液,然后均化成细乳液; 将细乳液转移到反应器中; 加热以增加温度以引发聚合; 反应后加入碱溶性单体; 继续反应后,将温度降至室温; 将pH调节至弱碱性; 并过滤以获得水性纳米颜料分散体。