지용성 용매 분리 장치
    11.
    发明公开
    지용성 용매 분리 장치 有权
    用于分离脂溶性溶剂的装置

    公开(公告)号:KR1020100054504A

    公开(公告)日:2010-05-25

    申请号:KR1020080113459

    申请日:2008-11-14

    Abstract: PURPOSE: An apparatus for separating a fat soluble solvent is provided to easily separate the fat soluble solvent and a water soluble solvent by adjusting lipophilic property of a carbon nanotube layer with voltage difference. CONSTITUTION: An apparatus for separating a fat soluble solvent includes a porous plate(125) in which a plurality of penetration holes(125a) is formed and a carbon nanotube layer(121) formed on the porous plate. The carbon nanotubes are installed on the porous plate. One end of the carbon nanotubes is supported by the porous plate and is vertically installed on the porous plate. The apparatus for separating the fat soluble solvent includes a housing(110). A pressure controller includes a piston and/or a pump.

    Abstract translation: 目的:提供一种用于分离脂溶性溶剂的装置,通过调节碳纳米管层的亲油性,通过电压差来容易地分离脂溶性溶剂和水溶性溶剂。 构成:用于分离脂溶性溶剂的装置包括其中形成有多个穿透孔(125a)的多孔板(125)和形成在多孔板上的碳纳米管层(121)。 碳纳米管安装在多孔板上。 碳纳米管的一端由多孔板支撑并垂直地安装在多孔板上。 用于分离脂溶性溶剂的装置包括壳体(110)。 压力控制器包括活塞和/或泵。

    Cu 환원 반응을 이용한 저 저항 SWNT 버키페이퍼 및 이의 제조방법과 복합재료
    12.
    发明公开
    Cu 환원 반응을 이용한 저 저항 SWNT 버키페이퍼 및 이의 제조방법과 복합재료 失效
    通过减少反应的单壁碳纳米管纸的方法

    公开(公告)号:KR1020070074713A

    公开(公告)日:2007-07-18

    申请号:KR1020060002595

    申请日:2006-01-10

    Abstract: A method of producing low resistivity SWNT bucky paper through Cu reducing reaction is provided to improve electric resistance of the bucky paper, which is useful in manufacturing microfine artificial muscles and super resistance composite materials by conducting electrolysis in a copper salt solution to combine the paper with copper molecules. The method comprises coupling of copper molecules to SWNT bucky paper(2) through copper reduction to lower electric resistivity. The copper reduction step is electrolysis of a copper salt solution and the electrolysis includes the steps of: preparing the copper salt; immersing a conductor connected to (+) pole and SWNT bucky paper connected to (-) pole in the copper salt; and applying voltage to both of (+) and (-) poles. The copper salt is copper acetate(1). SWNT is carbon nano-tube manufactured by a high pressure carbon monoxide manner. The low resistivity SWNT bucky paper has copper molecules combined thereto.

    Abstract translation: 提供了一种通过Cu还原反应生产低电阻率SWNT bucky纸的方法,以改善巴氏纸的电阻,该电阻可用于通过在铜盐溶液中进行电解来制造微细人造肌和超级电阻复合材料,以将纸与 铜分子。 该方法包括通过铜还原将铜分子耦合到SWNT凹版纸(2)以降低电阻率。 铜还原步骤是铜盐溶液的电解,电解包括以下步骤:制备铜盐; 将连接到(+)极的导体和连接到( - )极的SWNT凹版纸浸入铜盐中; 并向(+)和( - )两极施加电压。 铜盐是乙酸铜(1)。 SWNT是通过高压一氧化碳方式制造的碳纳米管。 低电阻率SWNT凹版纸具有与其结合的铜分子。

    은이 코팅된 탄소나노튜브가 함유된 전기접점재료의 제조방법
    17.
    发明公开
    은이 코팅된 탄소나노튜브가 함유된 전기접점재료의 제조방법 审中-实审
    制造含有静电涂覆的碳纳米管的电连接器材料的方法

    公开(公告)号:KR1020170032261A

    公开(公告)日:2017-03-22

    申请号:KR1020170030771

    申请日:2017-03-10

    CPC classification number: H01B1/04 C01B32/168 H01B1/02

    Abstract: 본발명은은이코팅된탄소나노튜브가함유된전기접점재료의제조방법에관한것으로, 더욱상세하게는 (a) 탄소나노튜브를질산용액내에넣고초음파분산및 산처리를수행하는단계; (b) 상기 a단계를통해초음파분산및 산처리된탄소나노튜브를세척하는단계; (c) 세척된상기탄소나노튜브를염화주석과염산의혼합용액및 염화팔라늄과염산의혼합용액에순차적으로혼합한후 각각초음파를가하여주석과팔라늄을상기탄소나노튜브의표면에결합시키는단계; (d) 질산은수용액과암모니아수용액을넣어무색이될때까지혼합한다음상기 c단계에서제조된상기탄소나노튜브를혼합하는단계; (e) 글리옥실산수용액과수산화나트륨수용액을혼합한다음탈이온수로세척하여은이코팅된탄소나노튜브를제조하는단계; 및 (f) 은이코팅된탄소나노튜브와은, 구리, 니켈및 금으로이루어진군에서선택된 1종이상의금속이함유된합금을혼합하여분말혼합체를제조하는단계;를포함하는것을특징으로하는은이코팅된탄소나노튜브가함유된전기접점재료의제조방법에관한것이다.

    Abstract translation: 本发明是在执行的步骤是,更具体地,(a)装入硝酸溶液,超声分散和根据包含所述电触点材料涂覆的碳纳米管的制造方法中的酸处理的碳纳米管; (b)通过步骤(a)清洗通过超声波分散而分散和酸处理的碳纳米管; (C)按顺序混合,以在混合溶液中的混合溶剂洗涤上述碳纳米管和氯化宫钛和氯化锡和盐酸,然后盐酸通过上升到结合锡和Palazzo钛的每个超声碳纳米管的表面上 步骤; (d)将硝酸银水溶液和氨水溶液加入到混合物中直到混合物变成无色,然后混合步骤(c)中制备的碳纳米管; (e)将乙醛酸水溶液和氢氧化钠水溶液混合,然后用去离子水洗涤以制备涂银的碳纳米管; 由包括一个涂层;以及(f)由银混合金属合金制备粉末混合物包含由涂覆碳纳米管,银,铜,镍和金的所选择的一个从该组件上 本发明涉及一种制造包含碳纳米管的电接触材料的方法。

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