首页> 外国专利> TRANSITION METAL-CARBON NITRIDE NANOTUBE HYBRIDS CATALYST, FABRICATION METHOD THEREOF AND METHOD FOR PRODUCING HYDROGEN USING THE SAME

TRANSITION METAL-CARBON NITRIDE NANOTUBE HYBRIDS CATALYST, FABRICATION METHOD THEREOF AND METHOD FOR PRODUCING HYDROGEN USING THE SAME

机译:过渡金属碳氮纳米管混合催化剂,其制备方法及使用该催化剂的制氢方法

摘要

A transition metal-carbon nanotube hybrid catalyst having a maximized catalytic activation, a manufacturing method thereof, and a method for producing hydrogen using the same are provided to produce hydrogen from a sodium borohydride solution. A transition metal-carbon nanotube hybrid catalyst has transition metal-carbon nanparticles of uniform size spread on carbon nanotube containing nitrogen. The transition metal-carbon nanotube hybrid catalyst includes the nitrogen of nitrogen 0.01~20 at%. The transition metal-carbon nanparticles are distributed on the surface of the carbon nanotube uniformly. The transition metal is one or more selected from a group consisting of iron, cobalt, nickel, and metal compounds in which their mixture is included. A hybrid catalyst improves the speed of hydrogen generation.
机译:提供了具有最大催化活性的过渡金属-碳纳米管杂化催化剂,其制造方法以及使用该催化剂制备氢的方法,以从硼氢化钠溶液中产生氢。过渡金属-碳纳米管杂化催化剂具有均匀大小的过渡金属-碳纳米颗粒分布在含氮的碳纳米管上。过渡金属-碳纳米管杂化催化剂包含0.01-20at%的氮。过渡金属-碳纳米颗粒均匀地分布在碳纳米管的表面上。过渡金属是选自铁,钴,镍和包括其混合物的金属化合物中的一种或多种。杂化催化剂提高了氢气产生的速度。

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