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    • 52. 发明公开
    • 이미드 그룹을 갖는 샬콘계 광 배향 소재
    • CHALCONE灯具对齐材料包括IMIDE GROUP
    • KR1020130119589A
    • 2013-11-01
    • KR1020120042497
    • 2012-04-24
    • 한국생산기술연구원
    • 신교직최경호이상국강주희정승용
    • C09K19/56G02F1/13
    • The present invention relates to a chalcone-based photoalignment material with an imide group. The chalcone-based photoalignment material with the imide group according to the present invention comprises at least one monomer. The monomer comprises: an imide group; a spacer connected to the imide group; a chalcone-based light reactive group connected to the spacer; and a rodlike group connected to the chalcone-based light reactive group. According to the present invention, unlike in the past, the the chalcone-based photoalignment material forms a chemical structure in which the imide group, the chalcone-based light reactive group and the rodlike group are linearly linked, thereby increasing the alignment safety of liquid crystal and remarkably improving heat stability, chemical resistance and mechanical property.
    • 本发明涉及一种具有酰亚胺基团的查耳酮系光取向材料。 根据本发明的具有酰亚胺基的查耳酮基光取代材料包含至少一种单体。 单体包括:酰亚胺基; 连接到酰亚胺基团的间隔物; 与间隔物连接的基于查耳酮的光反应性基团; 以及与查耳酮系的光反应性基团连接的棒状基团。 根据本发明,与以往不同,查尔酮系的光取向材料形成了酰亚胺基,查耳酮系的光反应性基团和棒状基团直链的化学结构,从而提高了液体的取向安全性 晶体,显着提高了热稳定性,耐化学性和机械性能。
    • 53. 发明公开
    • 투명 열저항소재 조성물 및 그 제조방법
    • 透明耐热性及其制造方法的组成
    • KR1020130107801A
    • 2013-10-02
    • KR1020120029880
    • 2012-03-23
    • 한국생산기술연구원
    • 최경호신교직이상국이민혜정승용
    • C08L79/08C08L33/12C08L29/04C08G73/10
    • Y02A30/247
    • PURPOSE: A transparent heat resistant material composition is provided to minimize the loss of visible ray transmittancy while remarkably improving heat resistance performance and thermal resistance. CONSTITUTION: A transparent heat resistant material composition comprises a polyamide acid and a pore-deriving polymer and includes 5-20 parts by weight of the pore-deriving polymer per 100.0 parts by weight of the polyamide acid. A manufacturing method of the transparent thermal resistant material composition comprises a step of manufacturing a mixture by mixing an acid anhydride, a diamine compound, and an organic solvent (S10); a step of manufacturing a polyamic acid solution by the reaction of the mixture (S20); and a step of manufacturing the transparent thermal resistant material composition by adding the pore-deriving polymer into the polyamide acid solution. [Reference numerals] (AA) Start; (BB) End; (S10) Mixing step; (S20) Reacting step; (S30) Adding step
    • 目的:提供透明的耐热材料组合物,以使可见光透射率的损失最小化,同时显着提高耐热性能和耐热性。 构成:透明耐热材料组合物包含聚酰胺酸和导孔聚合物,并且每100.0重量份聚酰胺酸包含5-20重量份的导孔聚合物。 透明耐热材料组合物的制造方法包括通过混合酸酐,二胺化合物和有机溶剂来制备混合物的步骤(S10); 通过混合物的反应制造聚酰胺酸溶液的步骤(S20); 以及通过将导孔聚合物添加到聚酰胺酸溶液中来制造透明耐热材料组合物的步骤。 (附图标记)(AA)开始; (BB)结束; (S10)混合步骤; (S20)反应步骤; (S30)添加步骤
    • 54. 发明公开
    • 카본블랙 및 이산화규소를 이용한 전자종이용 입자의 복합표면처리방법 및 이를 이용하여 복합표면처리된 전자종이용 입자
    • 使用碳化硅,SIO2和用于电子纸处理的复合表面的颗粒的电子纸的复合表面处理方法
    • KR1020130045648A
    • 2013-05-06
    • KR1020110109993
    • 2011-10-26
    • 한국생산기술연구원
    • 이상국최경호신교직정승용김은경
    • G02F1/167
    • G02F1/167G02F2001/1672G02F2001/1678
    • PURPOSE: A complex surface processing method of a particle for electronic paper and a particle for the electronic paper are provided to control an aggregation phenomenon between the particles by adding a compound of carbon black and silica to the surface of the particle. CONSTITUTION: Carbon black including an amino group and silica dioxide including the amino group are added to a fourth solvent. Bare particles are manufactured by distributing the reaction preparation solution to the bare particles(S50). After hydrochloric acid and glutaraldehyde are added to the reaction preparation solution, the hydrochloric acid and the glutaraldehyde are responded to the reaction preparation solution. [Reference numerals] (AA) Start; (BB) Reaction preparation step; (CC) Particle surface treatment step; (DD) End; (S10) Amino acid group applying step; (S11) Reaction solution manufacturing step; (S12) Nitric acid adding step; (S13,S44) Stirring step; (S131) First stirring step; (S132) Second stirring step; (S20) Electric charge applying step; (S21) Reactant manufacturing step; (S22) Reaction step; (S30) Refining step; (S40) Amino acid substituting step; (S41) Reaction solution manufacturing step; (S42) Heating step; (S43) Ethoxy silane adding step
    • 目的:提供电子纸颗粒和电子纸颗粒的复杂表面处理方法,以通过向颗粒表面添加炭黑和二氧化硅的化合物来控制颗粒之间的聚集现象。 构成:将包含氨基的炭黑和包含氨基的二氧化硅加入到第四溶剂中。 通过将反应制备溶液分配到裸颗粒来制造裸颗粒(S50)。 向反应制备溶液中加入盐酸和戊二醛后,对反应制备溶液进行盐酸和戊二醛反应。 (附图标记)(AA)开始; (BB)反应制备步骤; (CC)颗粒表面处理步骤; (DD)结束; (S10)氨基酸组施加步骤; (S11)反应溶液的制造工序; (S12)硝酸添加步骤; (S13,S44)搅拌步骤; (S131)第一搅拌步骤; (S132)第二搅拌步骤; (S20)电荷施加步骤; (S21)反应物制造工序; (S22)反应步骤; (S30)精炼步骤; (S40)氨基酸取代步骤; (S41)反应溶液的制造工序; (S42)加热步骤; (S43)乙氧基硅烷添加工序
    • 55. 发明授权
    • 이산화티타늄을 이용한 전자종이용 입자 외첨제의 제조방법 및 이를 이용하여 제조된 이산화티타늄을 이용한 전자종이용 입자 외첨제
    • 使用TiO2制备电子纸的颗粒外用添加剂的方法使用TiO2制备的二氧化钛和颗粒外用添加剂使用通过使用方法制备的TiO2
    • KR101215895B1
    • 2012-12-27
    • KR1020110034887
    • 2011-04-14
    • 한국생산기술연구원
    • 이상국최경호신교직김은경정승용
    • G02F1/167
    • G02F1/167G02F2001/1678
    • 본발명은이산화티타늄을이용한전자종이용입자외첨제의제조방법및 이를이용하여제조된이산화티타늄을이용한전자종이용입자외첨제에관한것으로서, 이산화티타늄을첨가한제 1용매에질산을첨가하여반응시켜아미노기를갖는이산화티타늄을제조하는아미노기부여단계; 및상기아미노기를갖는이산화티타늄을첨가한제 2용매에암모니아수를첨가하여반응시키는전하부여단계;를포함하여이루어지는것을특징으로한다. 본발명에의하면, 용액흡착방식을이용함으로써, 보다정량적이고균일하게입자에외첨제를흡착시킬수 있을뿐만아니라, 화학적결합에의하므로, 내구성을현저히향상시킬수 있으며, 이산화티타늄에아미노기를합성함으로써, 입자간뭉침현상을억제하고유동성을현저히향상시킬수 있는장점이있다.
    • 本发明涉及一种使用二氧化钛的电子纸颗粒的外用添加剂的制造方法,以及使用其制造的二氧化钛的电子粒子用外用添加剂的制造方法,其包括:将盐酸添加至 加入二氧化钛的第一溶剂与其反应,制造具有氨基的二氧化钛; 以及向添加有氨基的二氧化钛的第二溶剂中加入氨水并进行反应的电荷提供步骤。 根据本发明,通过使用溶液吸附法可以更加定量地均匀地吸附到外部添加剂,并且化学组合可以显着提高耐久性。 此外,通过将氨基合成到二氧化钛中,可以防止颗粒之间的结块,并且有利地且显着地增加颗粒迁移率。
    • 58. 发明公开
    • 이산화티타늄 외첨제를 이용한 전자종이용 입자의 표면처리방법 및 이를 이용하여 제조된 이산화티타늄 외첨제를 이용한 전자종이용 입자
    • 使用TIO2的外部添加剂和使用该方法制备的TIO2外用添加剂的电子纸的颗粒处理颗粒表面的方法
    • KR1020120117248A
    • 2012-10-24
    • KR1020110034888
    • 2011-04-14
    • 한국생산기술연구원
    • 이상국최경호신교직김은경정승용
    • G02F1/167
    • G02F1/167G02F2001/1678
    • PURPOSE: A method for treating a surface of a particle for electronic paper using titanium dioxide as an external additive and a particle for electronic paper using titanium dioxide are provided to react a particle with titanium dioxide at the best content ratio which has hydrochloric acid, glutaradehyde, and an amino group. CONSTITUTION: Titanium dioxide is heated for from 15 hours to 30 hours in the range of 300 to 500°C for purification(S10). The titanium dioxide is added to a first solvent and reacted(S20). Titanium dioxide with an amino group is manufactured. A bare particle is added and dispersed in a second solvent. A reaction preparation solution is manufactured(S30). Hydrochloric acid and glutaradehyde are added to the reaction preparation solution(S40). [Reference numerals] (AA) Start; (BB) End; (S10) Purifying; (S20) Amino group substitution; (S21) A reaction preparation solution is manufactured; (S22) Heating; (S23) Ethosysilane is added; (S24) Mixing; (S30) Reaction preparation; (S40) Particle surface processing
    • 目的:提供使用二氧化钛作为外部添加剂的电子纸颗粒表面和使用二氧化钛的电子纸颗粒的方法,其以最高含量比使二氧化钛与二氧化钛反应,所述比例为盐酸,戊二醛 ,和氨基。 构成:将二氧化钛在300〜500℃的范围内加热15〜30小时进行纯化(S10)。 将二氧化钛加入到第一溶剂中并反应(S20)。 制造具有氨基的二氧化钛。 将裸颗粒加入并分散在第二溶剂中。 制造反应制备溶液(S30)。 向反应制备溶液中加入盐酸和戊二醛(S40)。 (附图标记)(AA)开始; (BB)结束; (S10)净化; (S20)氨基取代; (S21)制造反应制备溶液; (S22)加热; (S23)加入乙氧基硅烷; (S24)混合; (S30)反应制备; (S40)颗粒表面处理