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    • 4. 发明公开
    • Noble pitch precursors used for preparations of carbon fiber, carbon nano-fibers and carbon materials including the carbon nano-fibers therefrom
    • 用于制备碳纤维,碳纳米纤维和碳材料的NOBLE PITCH前体,其中包括碳纳米纤维
    • KR20120114193A
    • 2012-10-16
    • KR20120094822
    • 2012-08-29
    • UNIV NAT CHONNAM IND FOUND
    • YANG KAP SEUNGKIM BO HYE
    • C08G61/10C07C15/20C08L95/00D01F9/155
    • PURPOSE: A high-molecular-weight pitch polymer is provided to be most suitably used for desired properties of carbon nanofiber at manufacturing carbon nanofiber, and to provide porous carbon material with high energy density, high power density, high adsorption, etc. CONSTITUTION: A high-molecular-weight pitch polymer consists of a repeating unit represented by chemical formula 2, and has a molecular weight of 1000-5000. The high-molecular-weight pitch polymer forms separated two-phase solution by mixing with polymer solution. The polymer solution comprises one or more polymers selected from a group consisting of PAN, polyimide, polybenzimidazole, cellulose, and Kevlar. The porous carbon nanofiber is formed by singly dissolving the high-molecular-weight pitch polymer or electrospinning a spinning solution which is dissolved by blending with PAN.
    • 目的:提供高分子量沥青聚合物,以最适合用于制造碳纳米纤维时所需的碳纳米纤维性能,并提供具有高能量密度,高功率密度,高吸附性等的多孔碳材料。构成: 高分子量沥青聚合物由化学式2表示的重复单元组成,分子量为1000-5000。 高分子量沥青聚合物通过与聚合物溶液混合形成分离的两相溶液。 聚合物溶液包含一种或多种选自PAN,聚酰亚胺,聚苯并咪唑,纤维素和凯夫拉尔的聚合物。 多孔碳纳米纤维通过单独溶解高分子量沥青聚合物或静电纺丝纺丝溶液而形成,纺丝溶液通过与PAN混合而溶解。
    • 5. 发明公开
    • Ag-photocatalyst-carbon nano fiber complex, method for producing the same, and filter comprising the same
    • AG-光催化性碳纳米纤维复合物,其制造方法和包含其的过滤器
    • KR20120097969A
    • 2012-09-05
    • KR20110017581
    • 2011-02-28
    • UNIV NAT CHONNAM IND FOUND
    • YANG KAP SEUNGKIM BO HYEKIM CHANG HYO
    • B01J23/50B01D39/00B01J23/68B01J37/16
    • B01J37/0228B01D39/00B01J23/50B01J37/08
    • PURPOSE: A silver-photo catalyst-carbon nano-fiber complex, a method for manufacturing the complex, and a filter including the complex are provided to increase the supporting amount of organic materials by expanding the surface area of a silver-photo catalyst-carbon nano-fiber complex. CONSTITUTION: A silver-photo catalyst-carbon nano-fiber complex includes silver. The silver is arranged on the surface of the complex based on the form of a face-centered cubic structure. The size of the silver is in a range between 6 and 18nm. The photo catalyst in the complex is one selected from a group including ZnO, WO_3, SnO_2, ZrO_2, and TiO_2. The composition ratio of metal atoms and the silver in the photo catalyst is 1:1.8-2.1. A method for manufacturing the complex includes the following: a carbon nano-fiber precursor material and a photo catalyst precursor material are dissolved to prepare a photo catalyst containing spinning solution; the spinning solution is electro-spun to prepare photo catalyst containing precursor fiber; the precursor fiber is stabilized at a temperature between 200 and 300 degrees Celsius to prepare photo catalyst containing anti-chlorination fiber; a silver precursor material-dissolved silver solution is prepared; silver particles are coated on the anti-chlorination fiber; and the coated anti-chlorination fiber is dried and carbonized.
    • 目的:提供银 - 光催化剂 - 碳纳米纤维络合物,复合物的制造方法和包含该络合物的过滤器,以通过使银 - 光催化剂 - 碳的表面积扩大来增加有机材料的支持量 纳米纤维复合物。 构成:银 - 光催化剂 - 碳纳米纤维络合物包括银。 基于面心立方结构的形式,将银布置在复合体的表面上。 银的大小在6到18nm之间。 络合物中的光催化剂是选自包括ZnO,WO_3,SnO_2,ZrO_2和TiO_2的组中的光催化剂。 光催化剂中金属原子和银的组成比为1:1.8-2.1。 制造复合物的方法包括:将碳纳米纤维前体材料和光催化剂前体材料溶解以制备含有纺丝溶液的光催化剂; 将纺丝溶液电纺制备含有前体纤维的光催化剂; 前体纤维在200-300摄氏度的温度下稳定,以制备含有抗氯化纤维的光催化剂; 制备银前体材料溶解的银溶液; 银颗粒涂覆在防氯化纤维上; 将涂覆的防氯化纤维干燥并碳化。