Nitrogen-doped carbon-supported cobalt-iron oxygen reduction catalyst
    35.
    发明授权
    Nitrogen-doped carbon-supported cobalt-iron oxygen reduction catalyst 有权
    氮掺杂碳载钴钴氧还原催化剂

    公开(公告)号:US08709295B2

    公开(公告)日:2014-04-29

    申请号:US13094594

    申请日:2011-04-26

    CPC classification number: H01M4/9083 H01M4/9041 H01M2008/1095

    Abstract: A Fe—Co hybrid catalyst for oxygen reaction reduction was prepared by a two part process. The first part involves reacting an ethyleneamine with a cobalt-containing precursor to form a cobalt-containing complex, combining the cobalt-containing complex with an electroconductive carbon supporting material, heating the cobalt-containing complex and carbon supporting material under conditions suitable to convert the cobalt-containing complex and carbon supporting material into a cobalt-containing catalyst support. The second part of the process involves polymerizing an aniline in the presence of said cobalt-containing catalyst support and an iron-containing compound under conditions suitable to form a supported, cobalt-containing, iron-bound polyaniline species, and subjecting said supported, cobalt-containing, iron bound polyaniline species to conditions suitable for producing a Fe—Co hybrid catalyst.

    Abstract translation: 通过两部分方法制备用于氧反应还原的Fe-Co杂化催化剂。 第一部分涉及使乙烯胺与含钴前体反应以形成含钴络合物,将含钴络合物与导电碳载体材料结合,在适于转化含钴络合物的条件下加热含钴络合物和碳载体材料 含钴络合物和碳载体材料转化成含钴催化剂载体。 该方法的第二部分涉及在所述含钴催化剂载体和含铁化合物的存在下在适于形成负载的,含钴的,铁结合的聚苯胺物质的条件下聚合苯胺,并将所述负载的钴 含铁的结合聚苯胺物种适用于生产Fe-Co杂化催化剂的条件。

    ELECTRODE CATALYST DISPERSION AND INK COMPOSITION
    38.
    发明申请
    ELECTRODE CATALYST DISPERSION AND INK COMPOSITION 审中-公开
    电极催化剂分散和油墨组成

    公开(公告)号:US20110262828A1

    公开(公告)日:2011-10-27

    申请号:US12808742

    申请日:2008-12-18

    Abstract: There is provided an electrode catalyst layer that has excellent durability compared to conventional electrode catalyst layers employing carbon supports, and that can minimize as much as possible the amount of catalyst material used while exhibiting desired output, by allowing adjustment of the amount as necessary. The electrode catalyst dispersion of the disclosure comprises catalyst particles that contain a non-conductive support and a conductive catalyst material covering the surface of non-conductive support, and a dispersing medium selected from among water, organic solvents and combinations thereof. The ink composition of the disclosure comprises catalyst particles containing a non-conductive support and a conductive catalyst material covering the surface of non-conductive support, a dispersing medium selected from among water, organic solvents and combinations thereof, and an ionic conductive polymer, wherein the volume ratio of the catalyst particles and the ionic conductive polymer is 55:45-90:10. There is further provided an electrode catalyst layer.

    Abstract translation: 提供了与使用碳载体的常规电极催化剂层相比具有优异的耐久性的电极催化剂层,并且通过允许根据需要调节量,可以尽可能地尽可能地使所使用的催化剂材料的量尽可能地最小化。 本公开的电极催化剂分散体包含含有非导电载体和覆盖非导电载体表面的导电催化剂材料的催化剂颗粒,以及选自水,有机溶剂及其组合的分散介质。 本公开的油墨组合物包含含有非导电载体和覆盖非导电载体表面的导电催化剂材料的催化剂颗粒,选自水,有机溶剂及其组合的分散介质和离子导电聚合物,其中 催化剂颗粒和离子导电聚合物的体积比为55:45-90:10。 还提供了电极催化剂层。

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