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Characterization of different Pt/Metal/Complex catalysts as anode catalysts for the PEM fuel cell

机译:表征不同的Pt / Metal / Complex催化剂作为PEM燃料电池的阳极催化剂

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Different Pt/Me/Pc and Pt/Me/Complex catalysts (with Me = Metal: Co, Ni, and Pc = phthalocyanine) were synthesized by an impregnation method. A commercially available platinum catalyst purchased from E-TEK. was impregnated with solutions of cobalt phthalocyanine (CoPc) and nickel phthalocyanine tetrasulfonic salt (NiPc). After the reaction, part of the catalyst was heat treated at 700 deg C under nitrogen atmosphere. The resulting catalysts were structurally and electrochemically characterized before (Pt/Me/Pc) and after heat treatment (Pt/Me/Complex). The Pt/Me/Pc had an average particle size of about 3 nm, while the average size after heat treatment increased to about 7 nm. The composition of the different catalysts was about 80 at percent platinum and 20 at percent of the second metal (Co or Ni), and was verified with EDXS. In single fuel cell tests the best electrocatalytic activity was observed for the Pt/Ni/Complex system.
机译:通过浸渍法合成了不同的Pt / Me / Pc和Pt / Me /络合物催化剂(Me =金属:Co,Ni和Pc =酞菁)。从E-TEK购买的市售铂催化剂。将其用钴酞菁(CoPc)和镍酞菁四磺酸盐(NiPc)溶液浸渍。反应后,将一部分催化剂在氮气氛下在700℃下进行热处理。在热处理之前(Pt / Me / Pc)和热处理之后(Pt / Me / Complex)对所得催化剂进行结构和电化学表征。 Pt / Me / Pc具有约3nm的平均粒径,而热处理后的平均粒径增加至约7nm。不同催化剂的组成为约80%的铂和20%的第二种金属(Co或Ni),并用EDXS进行了验证。在单燃料电池测试中,Pt / Ni / Complex系统观察到最佳的电催化活性。

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