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    • 1. 发明申请
    • PLATINUM AND TITANIUM CONTAINING ELECTROCATALYSTS
    • 含有电解质的铂和钛
    • WO2007081774A3
    • 2007-09-13
    • PCT/US2007000225
    • 2007-01-05
    • HONDA MOTOR CO LTDHE TINGKREIDLER ERIC ROLLAND
    • HE TINGKREIDLER ERIC ROLLAND
    • H01M4/92B01J23/42
    • H01M4/921H01M4/926H01M2008/1095
    • The present teachings are directed toward electrocatalyst compositions consisting essentially of platinum, titanium, and additional metals, possibly up to five total metals, for use in fuel cells. The electrocatalyst compositions are composed essentially of platinum, titanium, and a third metal, possibly a fourth or fifth metal in some embodiments, can be present. The possible third metals include at least one member selected from the group consisting of nickel, vanadium, molybdenum, copper, manganese, iron, cobalt, ruthenium, rhodium, palladium, silver, osmium, iridium and gold. Any additional fourth and fifth metals are different from the third metal and each other and can be selected from the group consisting of scandium, vanadium, chromium, manganese, iron, nickel, copper, zinc, yttrium, zirconium, niobium, molybdenum, cadmium, tin, hafnium, tantalum and rhenium.
    • 本教导涉及基本上由铂,钛和另外的金属组成的电催化剂组合物,可能多达五种总金属用于燃料电池。 电催化剂组合物基本上由铂,钛和第三金属组成,在一些实施方案中可能是第四或第五金属。 可能的第三金属包括选自镍,钒,钼,铜,锰,铁,钴,钌,铑,钯,银,锇,铱和金中的至少一种。 任何额外的第四和第五金属与第三金属彼此不同,并且可以选自钪,钒,铬,锰,铁,镍,铜,锌,钇,锆,铌,钼,镉, 锡,铪,钽和铼。
    • 5. 发明申请
    • HIGH THROUGHPUT MULTI-CHANNEL ROTATING DISK OR RING-DISK ELECTRODE ASSEMBLY AND METHOD
    • 高通道多通道旋转盘或环形电极组件及方法
    • WO2005057162A3
    • 2006-01-26
    • PCT/US2004026555
    • 2004-08-16
    • HONDA MOTOR CO LTDHE TING
    • HE TING
    • G01N27/403G01N27/416
    • G01N27/403
    • An electrochemical cell assembly including a plurality of testing cells (100), a reference cell (120), and fluid connections between the testing cells (100) and the reference cell (120). Each of the testing cells (100) includes a working electrode (106), which is a rotating disk or ring-disk electrode, and a counter electrode (110). A chemical composition, whose intrinsic kinetic properties under defined mass-transfer are to be investigated, is deposited on the working electrode (106). The reference cell (120) holds a reference electrode (124) that serves as a common reference electrode for each of the testing cells (100). The assembly permits simultaneous testing of many chemical compositions under identical environment.
    • 包括多个测试单元(100),参考单元(120)以及测试单元(100)和参考单元(120)之间的流体连接的电化学电池组件。 每个测试单元(100)包括作为旋转盘或环形盘电极的工作电极(106)和对电极(110)。 在工作电极(106)上沉积一种其规定的质量传递下的内在动力学特性的化学成分。 参考单元(120)保持用作每个测试单元(100)的公共参考电极的参考电极(124)。 组件允许在相同环境下同时测试许多化学成分。
    • 8. 发明申请
    • METAL AND ALLOY NANOPARTICLES AND SYNTHESIS METHODS THEREOF
    • 金属和合金纳米粒子及其合成方法
    • WO2005118184A3
    • 2006-04-27
    • PCT/US2005013563
    • 2005-04-21
    • HONDA MOTOR CO LTDUNIV NEW YORK STATE RES FOUNDHE TINGZHONG CHUAN-JIANLUO JINMAYE MATHEW MHAN LIKARIUKI NANCY NWANG LINGYAN
    • HE TINGZHONG CHUAN-JIANLUO JINMAYE MATHEW MHAN LIKARIUKI NANCY NWANG LINGYAN
    • B22F1/00B01J35/00B22F1/02B22F9/20B22F9/24
    • B22F9/24B22F1/0018B22F1/0088B82Y30/00Y10S977/896
    • The present teachings are directed toward single metal and alloy nanoparticles and synthesis methods for preparing single metal and alloy nanoparticles. The present teachings include a method of preparing metal nanoparticles which method includes contacting a metal- containing component with a reducing agent, optionally with a capping agent, in a solvent system to form a reaction mixture. The reaction mixture can be heated to reflux, cooled, and the desired metal nanoparticles can be precipitated from the reaction mixture. Optionally, the metal nanoparticles can be supported on a suitable support material, such as, a high surface area support material. The support material can be incorporated into the reaction mixture, for instance, along with the reducing agent. The present teachings include a method of preparing alloy nanoparticles which method includes contacting at least two metal-containing components with a reducing agent and at least one capping agent in a solvent system to form a reaction mixture, heating and refluxing the reaction mixture, cooling the reaction mixture, and precipitating the alloy nanoparticles from the cooled reaction mixture.
    • 本教导涉及单金属和合金纳米颗粒以及用于制备单一金属和合金纳米颗粒的合成方法。 本教导包括制备金属纳米颗粒的方法,该方法包括使含金属的组分与还原剂(任选地与封端剂)在溶剂体系中接触以形成反应混合物。 反应混合物可以加热回流,冷却,并且可以从反应混合物中沉淀所需的金属纳米颗粒。 任选地,金属纳米颗粒可以被支撑在合适的支撑材料,例如高表面积的支撑材料上。 载体材料可以与还原剂一起并入反应混合物中。 本教导包括制备合金纳米颗粒的方法,该方法包括在溶剂系统中使至少两种含金属的组分与还原剂和至少一种封端剂接触以形成反应混合物,加热和回流反应混合物,冷却 反应混合物,并从冷却的反应混合物中沉淀合金纳米颗粒。