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    • 2. 发明授权
    • 수분에 안정한 알릴실란화 포스포릴콜린의 제조방법
    • 水分稳定的烯丙基酰磷胆碱的制备方法
    • KR101703414B1
    • 2017-02-06
    • KR1020150030158
    • 2015-03-04
    • 연세대학교 원주산학협력단
    • 이명의유뢰
    • C07F9/09C07F7/02C07F7/04
    • 본발명은말단에알킨기가도입된포스포릴콜린(phosphorylcholine, PC)을클릭화학(click chemistry) 반응에따라구리촉매존재하에서아자이드화합물과반응시켜말단에기능성기가도입된알릴실란화포스포릴콜린을제조하는단계를포함하는, 포스포릴콜린의말단기능화방법에관한것으로서, 본발명에서는구리-촉매클릭반응을통해알릴실란화포스포릴콜린(Allylsilanated phosphorylcholines), 보다구체적으로는메트알릴실란화포스포릴콜린(Methallylsilanated phosphorylcholines, MASPCs)을합성하는방법을제공함으로써, 수성시스템(aqueous system)에서도반응이잘 진행되고, 넓은온도범위및 pH 범위에서도높은수율로알릴실란화포스포릴콜린을수득하며, 반응과정에서기능성기(functional group)가모두안전하게보존될수 있는제조방법을제공하고자한다.
    • 本发明涉及磷酸胆碱(PC)的末端官能化方法,包括在铜催化剂存在下通过点击化学反应使具有取代的末端烯烃的PC与叠氮化合物反应以产生烯丙基丙烯酸酯化的步骤 具有取代的末端基团的PC。 本发明提供了一种通过铜 - 催化剂咔哒反应的烯丙基纤维素PC(MASPC)的合成方法,其中即使在水性体系中反应也容易进行,并且产生宽产率的聚丙烯酰胺 温度和pH范围,同时在反应过程中保持所有的官能团完整。
    • 7. 发明授权
    • 1차폴리아민을 갖는 규소화합물의 표면 구조 및 이의 제조방법
    • 具有主要聚酰胺的二氧化硅化合物的表面结构及其生产方法
    • KR101308021B1
    • 2013-10-15
    • KR1020120031854
    • 2012-03-28
    • 한국과학기술연구원
    • 최웅수고영건신승수
    • B01J20/26C07F7/04C08G73/02
    • B01J20/30B01J20/26C07F7/04
    • PURPOSE: A surface structure in which a polyamine and a substrate are chemically combined, and a manufacturing method thereof are provided to have the surface structure which implements an excellent carbon dioxide adsorption quantity and high operation effect in the separation process; and capable of being reused. CONSTITUTION: A manufacturing method of a surface structure comprises the following steps. A step of combining a substrate in which a silane compound which includes a carbon double bond which is represented as the chemical formula 1 is chemically combined on the surface of the substrate which includes silicon; a step of forming a polyamine in which the polyamine which is represented as the chemical formula 3 forms the substrate which is chemically combined according to a reaction between silane compound which is represented as the chemical formula 1 in which the surface and one end of the substrate are chemically combined; and primary amine which is represented as the chemical formula 2. a, b, c and n are the whole number of 0-5 in the chemical formula 1. m is the whole number of 0-5 in the chemical formula 2. [Reference numerals] (AA) Silicon and silicon compound in which hydratory is combined; (BB) Silicon and silicon compound in which carbon double bond is combined; (CC) Silicon and silicon compound in which Polyallylamineis combined
    • 目的:将多胺和基材化学结合的表面结构体及其制造方法设置为具有在分离过程中实现优异的二氧化碳吸附量和高操作效果的表面结构; 并能够重复使用。 构成:表面结构的制造方法包括以下步骤。 将包含表示为化学式1的包含碳双键的硅烷化合物的基板在包含硅的基板的表面上化学结合的基板的组合步骤; 形成多胺的步骤,其中以化学式3表示的多胺形成基于化学组合的基板,该基板根据其中表面为化学式1的硅烷化合物之间的反应,其中基板的表面和一端 化学结合; 和表示为化学式2的伯胺.a,b,c和n在化学式1中为0-5的整数。m是化学式2中0-5的整数。[参考 数字](AA)组合水合的硅和硅化合物; (BB)其中碳双键结合的硅和硅化合物; (CC)其中聚烯丙基胺组合的硅和硅化合物
    • 8. 发明公开
    • 트리알콕시실란의 제조방법
    • 一种制备三甲氧基硅烷的方法
    • KR1020130027074A
    • 2013-03-14
    • KR1020120031567
    • 2012-03-28
    • 오씨아이 주식회사인스티튜트 오브 아이온-플라즈마엔드 레이저 테크놀러지스
    • 양세인김용일김경열김덕윤아스럽카탐압둘라크마놉보리스로스히틴브라디미르사리크브샵캇아수라바키카얏살림보에브아지조브술탄사이돕사빌
    • C07F7/04B01J23/72B01D35/00
    • C07F7/025B01J23/72C07F7/04
    • PURPOSE: A manufacturing method of trialkoxysilane is provided to secure a continuous removal of products from the side reaction and foreign substances which contaminates a solution from the reaction environment and which is able to be a catalyst of the side reaction. CONSTITUTION: A manufacturing method of trialkoxysilane comprises: a step which pulverizes silicon in solute into the minute particle size ranged from 30 to 100 micrometers, and directly use the solute in a trialkoxysilane synthesizing process; a continuous synthesizing step of the trialkoxysilane which supplies suspension of the loss amount of silicon and absolute alcohol for the reaction to a reactor, to make the continuous and stable reaction by calculating the consumption of suspension from the synthesized trialkonysilane to maintain the amount of silicon which is supplied to the reactor and the amount of silicon from the completed reaction be the same; and a foreign substance removal step which supplements the solute by continuously supplying the solute in the bleeding amount to the reactor as the suspension composition. [Reference numerals] (AA) Embodiment 1; (BB) Comparative embodiment; (CC) Embodiment 2; (DD) Embodiment 3
    • 目的:提供三烷氧基硅烷的制造方法,以确保副反应中的产物的连续除去以及污染来自反应环境的溶液并能够作为副反应的催化剂的异物。 构成:三烷氧基硅烷的制造方法包括:将溶质中的硅粉碎成30〜100微米的微小粒径的步骤,并在三烷氧基硅烷合成方法中直接使用溶质; 三烷氧基硅烷的连续合成步骤,其将用于反应的硅和无水乙醇的损失量的悬浮液供应到反应器,以通过计算来自合成的三烷氧基硅烷的悬浮液的消耗来使连续和稳定的反应保持硅的量 被提供给反应器,并且来自完成反应的硅的量相同; 以及异物去除步骤,通过将作为悬浮液组合物的出口量的溶质连续供给到反应器中来补充溶质。 (附图标记)(AA)实施例1; (BB)比较实施例; (CC)实施例2; (DD)实施例3