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    • 2. 发明申请
    • ELECTRODE FOR FUEL CELL AND FUEL CELL USING THE SAME
    • 用于燃料电池的电极和使用它的燃料电池
    • US20080145744A1
    • 2008-06-19
    • US11845437
    • 2007-08-27
    • Tae-young KIMMyung-dong Cho
    • Tae-young KIMMyung-dong Cho
    • H01M8/02
    • H01M8/086H01M4/8605H01M4/926
    • An electrode for a fuel cell including a support and a catalyst layer formed on the support, wherein the catalyst layer comprises a supported catalyst and a polyurethane-based compound, wherein all or some of the polyurethane-based compound is synthesized from a polyol monomer where some or all of the polyol monomer is a polyol monomer that contains a phosphonyl group; a method of preparing the same; and a fuel cell including the same. The electrode for a fuel cell has excellent ion conductivity because it maintains stability at high temperature operation, and is capable of retaining phosphoric acid effectively even at high temperatures. A fuel cell can be prepared by using the electrode where the fuel cell can operate under these conditions of high temperature above 100° C. and no humidity and shows improved performance for generating electricity.
    • 一种用于燃料电池的电极,包括支撑体和形成在载体上的催化剂层,其中催化剂层包含负载型催化剂和聚氨酯类化合物,其中所有或部分聚氨酯类化合物由多元醇单体合成, 一些或全部多元醇单体是含有膦酰基的多元醇单体; 其制备方法; 和包括该燃料电池的燃料电池。 用于燃料电池的电极具有优异的离子传导性,因为它在高温操作时保持稳定性,并且即使在高温下也能够有效地保留磷酸。 燃料电池可以通过使用燃料电池可以在高于100℃的高温条件下操作的电极并且没有湿度并且显示改善的发电性能来制备。
    • 3. 发明授权
    • Electrode for fuel cell and fuel cell using the same
    • 用于燃料电池的电极和使用其的燃料电池
    • US08148029B2
    • 2012-04-03
    • US11845437
    • 2007-08-27
    • Tae-young KimMyung-dong Cho
    • Tae-young KimMyung-dong Cho
    • H01M8/10
    • H01M8/086H01M4/8605H01M4/926
    • An electrode for a fuel cell including a support and a catalyst layer formed on the support, wherein the catalyst layer comprises a supported catalyst and a polyurethane-based compound, wherein all or some of the polyurethane-based compound is synthesized from a polyol monomer where some or all of the polyol monomer is a polyol monomer that contains a phosphonyl group; a method of preparing the same; and a fuel cell including the same. The electrode for a fuel cell has excellent ion conductivity because it maintains stability at high temperature operation, and is capable of retaining phosphoric acid effectively even at high temperatures. A fuel cell can be prepared by using the electrode where the fuel cell can operate under these conditions of high temperature above 100° C. and no humidity and shows improved performance for generating electricity.
    • 一种用于燃料电池的电极,包括支撑体和形成在所述载体上的催化剂层,其中所述催化剂层包含负载型催化剂和聚氨酯类化合物,其中所述或一些所述聚氨酯类化合物由多元醇单体合成, 一些或全部多元醇单体是含有膦酰基的多元醇单体; 其制备方法; 和包括该燃料电池的燃料电池。 用于燃料电池的电极具有优异的离子传导性,因为它在高温操作时保持稳定性,并且即使在高温下也能够有效地保留磷酸。 燃料电池可以通过使用燃料电池可以在高于100℃的高温条件下操作的电极并且没有湿度并且显示改善的发电性能来制备。
    • 8. 发明授权
    • Organic electrolytic solution and lithium battery using the same
    • 有机电解液和锂电池使用相同
    • US07445872B2
    • 2008-11-04
    • US10601907
    • 2003-06-24
    • Ju-yup KimMyung-dong ChoYoung-gyoon Ryu
    • Ju-yup KimMyung-dong ChoYoung-gyoon Ryu
    • H01M6/16H01M4/58
    • H01M10/0569H01M2/1653H01M4/581H01M10/052H01M10/0525H01M10/0565H01M10/0567
    • An organic electrolytic solution containing a lithium salt, an organic solvent, and an oxalate compound, and a lithium battery using the organic electrolytic solution are provided. Due to the oxalate compound, the organic electrolytic solution stabilizes lithium metal and improves the conductivity of lithium ions. Also, the organic electrolytic solution present invention improves charging/discharging efficiency when used in lithium batteries having a lithium metal anode. Especially when the organic electrolytic solution is used in lithium sulfur batteries, the oxalate compound forms a chelate with lithium ions and improves the ionic conductivity and the charging/discharging efficiency of the battery. In addition, due to the chelation of the lithium ions, negative sulfur ions remain free without interaction with lithium ions, are highly likely to dissolve in an electrolytic solution. As a result, a reversible capacity of sulfur is improved.
    • 提供含有锂盐,有机溶剂和草酸盐化合物的有机电解液以及使用该有机电解液的锂电池。 由于草酸盐化合物,有机电解液稳定了锂金属,提高了锂离子的导电性。 此外,当使用具有锂金属阳极的锂电池时,本发明的有机电解液改善了充电/放电效率。 特别是当有机电解液用于锂硫电池时,草酸盐化合物与锂离子形成螯合物,提高了电池的离子电导率和充电/放电效率。 此外,由于锂离子的螯合,负硫离子保持游离而不与锂离子相互作用,很可能溶解在电解液中。 结果,硫的可逆容量得到改善。
    • 9. 发明申请
    • Portion conductive electrolyte, method of preparing the same, electrode for fuel cell, method of manufacturing the electrode, and fuel cell including the same
    • 部分导电电解质,其制备方法,燃料电池用电极,电极的制造方法以及包含该电极的燃料电池
    • US20060269817A1
    • 2006-11-30
    • US11441000
    • 2006-05-26
    • Myung-dong ChoJung-ock Park
    • Myung-dong ChoJung-ock Park
    • H01M8/10C08J5/20H01M4/86H01M4/88
    • H01M8/1081C08J5/2268C08J2375/04C08J2387/00H01B1/122H01M4/8605H01M4/8803H01M8/1023H01M8/1027H01M8/103H01M8/1039H01M8/1044H01M2008/1095H01M2300/0082Y02P70/56
    • A proton conductive electrolyte including a polymerized polyurethane, polyethylene(metha)acrylic acid (PEAA), and a cross-linking agent mixture; a method of preparing the same; an electrode including a support and a catalyst layer, the catalyst layer including a supported catalyst and a polymerized mixture of a polyurethane based compound and a polyethylene(metha)acrylic acid; a method of preparing the electrode; and a fuel cell including the proton conductive electrolyte and/or the electrode. The proton conductive electrolyte can be prepared at lower costs than conventionally used polybenzimidazole and NAFION and can be easily formed into a membrane with a controlled thickness by casting. The polymer electrolyte membrane has high mechanical strength, flexibility, and excellent ionic conductivity. The electrode remains stable under high temperature operation, a strong binding force is maintained between the support and the catalyst layer, and the electrode has excellent ionic conductivity. The fuel cell produced using the proton conductive electrolyte and/or the electrode can operate at 100° C. or higher under non-humidified conditions and exhibits an improved performance.
    • 包含聚合的聚氨酯,聚乙烯(甲基)丙烯酸(PEAA)和交联剂混合物的质子传导电解质; 其制备方法; 包括载体和催化剂层的电极,所述催化剂层包括负载型催化剂和聚氨酯类化合物与聚乙烯(甲基)丙烯酸的聚合混合物; 制备电极的方法; 以及包括质子传导性电解质和/或电极的燃料电池。 质子传导电解质可以以比常规使用的聚苯并咪唑和NAFION更低的成本制备,并且可以通过铸造容易地形成具有受控厚度的膜。 聚合物电解质膜具有高机械强度,柔韧性和优异的离子导电性。 电极在高温操作下保持稳定,在支撑体和催化剂层之间保持牢固的结合力,电极具有优异的离子导电性。 使用质子传导电解质和/或电极制造的燃料电池可在非加湿条件下在100℃或更高温度下工作,并且表现出改进的性能。