Method for producing gold fine particle-supported carrier catalyst for fuel cell, and polymer electrolyte fuel cell catalyst having gold fine particle
    3.
    发明授权
    Method for producing gold fine particle-supported carrier catalyst for fuel cell, and polymer electrolyte fuel cell catalyst having gold fine particle 有权
    用于制造用于燃料电池的金微粒负载载体催化剂的方法和具有金精细颗​​粒的聚合物电解质燃料电池催化剂

    公开(公告)号:US08367272B2

    公开(公告)日:2013-02-05

    申请号:US12997257

    申请日:2009-05-27

    IPC分类号: H01M4/02

    摘要: A method for producing a gold fine particle-supported carrier catalyst for a fuel cell, which reduces a gold ion in a liquid phase reaction system containing a carbon carrier by means of an action of a reducing agent, to reduce the gold ion, deposit, and support a gold fine particle on the carbon carrier, wherein a reduction rate of the gold ion is set within the range of 330 to 550 mV/h, and pH is set within the range of 4.0 to 6.0 to perform the reduction of the gold ion, deposition, and support of the gold fine particle.

    摘要翻译: 一种用于制造用于燃料电池的金微粒负载载体催化剂的方法,其通过还原剂的作用减少含有碳载体的液相反应体系中的金离子,以减少金离子,沉积, 并且在碳载体上负载金微粒子,其中金离子的还原率设定在330〜550mV / h的范围内,pH设定在4.0〜6.0的范围内,进行金的还原 离子,沉积和支持金微粒。

    Electrode catalyst for fuel cell and production process of the same
    5.
    发明申请
    Electrode catalyst for fuel cell and production process of the same 审中-公开
    燃料电池用电极催化剂及其生产工艺相同

    公开(公告)号:US20090092888A1

    公开(公告)日:2009-04-09

    申请号:US12285076

    申请日:2008-09-29

    IPC分类号: H01M4/88

    摘要: To enhance the activation of a catalyst comprising an alloy of platinum and cobalt, thereby providing an electrode catalyst for fuel cell whose battery output and fuel efficiency are high, and thereby providing a production process of the same.An electrode catalyst according to the present invention for fuel cell is an electrode catalyst for fuel cell in which catalytic particles comprising platinum and cobalt are loaded on a conductive support, and is characterized in that a compositional (molar) ratio of said catalytic particles is platinum:cobalt=3:1-5:1: In the range of platinum:cobalt=3:1-5:1, a high battery voltage is obtainable. When the proportion of platinum is less than platinum: cobalt=3:1, the elution of cobalt from out of catalyst increases. On the contrarily, when the proportion of platinum is more than platinum: cobalt=5:1, the catalytic activities become low.

    摘要翻译: 为了增强包含铂和钴的合金的催化剂的活化,从而为电池输出和燃料效率高的燃料电池提供电极催化剂,从而提供其生产方法。 根据本发明的用于燃料电池的电极催化剂是用于燃料电池的电极催化剂,其中包含铂和钴的催化颗粒负载在导电载体上,其特征在于所述催化颗粒的组成(摩尔比)为铂 :钴= 3:1-5:1:在铂:钴= 3:1-5:1的范围内,可获得高电池电压。 当铂的比例小于铂:钴= 3:1时,钴从催化剂中的洗脱增加。 相反,当铂的比例大于铂:钴= 5:1时,催化活性变低。

    PRODUCTION PROCESS OF ELECTRODE CATALYST FOR FUEL CELL
    6.
    发明申请
    PRODUCTION PROCESS OF ELECTRODE CATALYST FOR FUEL CELL 有权
    燃料电极催化剂的生产工艺

    公开(公告)号:US20090099009A1

    公开(公告)日:2009-04-16

    申请号:US12239234

    申请日:2008-09-26

    IPC分类号: H01M4/88

    摘要: To provide a production process of an electrode catalyst for fuel cell whose initial voltage is high and whose endurance characteristics, especially, whose voltage drop being caused by high-potential application is less.A production process according to the present invention of an electrode catalyst for fuel cell is characterized in that: it includes: a dispersing step of dispersing a conductive support in a solution; a loading step of dropping a platinum-salt solution, a base-metal-salt solution and an iridium-salt solution to the resulting dispersion liquid, thereby loading respective metallic salts on the conductive support as hydroxides under an alkaline condition; and an alloying step of heating the conductive support with metallic hydroxides loaded in a reducing atmosphere to reduce them, thereby alloying them.

    摘要翻译: 提供初始电压高的燃料电池用电极催化剂的制造方法,特别是其高电位施加引起的电压降较小的耐久特性。 根据本发明的用于燃料电池的电极催化剂的制备方法的特征在于:它包括:将导电载体分散在溶液中的分散步骤; 将铂盐溶液,贱金属盐溶液和铱盐溶液滴加到所得分散液中的装载步骤,从而在碱性条件下将各种金属盐作为氢氧化物负载在导电载体上; 以及合金化步骤,用负载在还原气氛中的金属氢氧化物来加热导电载体以减少它们,从而使它们合金化。

    Printing device and printing method

    公开(公告)号:US10703114B2

    公开(公告)日:2020-07-07

    申请号:US16426481

    申请日:2019-05-30

    摘要: A printing device includes an ink container accommodating a liquid containing a clear ink containing water and a resin, a discharging head to discharge the clear ink directly or indirectly onto a substrate to form a printing layer, and a heating device to heat the substrate, wherein the following relationship is satisfied: Tlow (degrees C.)>Thigh (degrees C.), where Tlow (degrees C.) represents the temperature of the substrate that the heating device is heating during printing in a low gloss printing mode and Thigh (degrees C.) represents the temperature of the substrate that the heating device is heating during printing in a high gloss printing mode, wherein the following relationships are satisfied: in the high gloss printing mode, Gp≥Gm and, in the low gloss printing mode, Gm≥Gp, where Gm represents the gloss level of the substrate and Gp represents the gloss level of the printing layer.