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首页> 外文期刊>ACS applied materials & interfaces >New Insights into Layered Graphene Materials as Substrates to Regulate Synthesis of Ni-P Nanomaterials for Electrocatalytic Oxidation of Methanol and Water
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New Insights into Layered Graphene Materials as Substrates to Regulate Synthesis of Ni-P Nanomaterials for Electrocatalytic Oxidation of Methanol and Water

机译:分层石墨烯材料的新见解,以调节Ni-P纳米材料的合成,用于甲醇和水的电催化氧化

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摘要

The doping ring-core nickel phosphide/ graphene nanomaterial is obtained by H-2 reduction of the flower-like nickel phosphates/graphene oxide (NiPOGO) and sea urchin-like nickel phosphates/chemically converted graphene (NiPOG) substrates. The obtained structure of nickel phosphates depends on the influence of different kinds of oxygen-containing groups on the graphene substrate. The substrate can also affect the particle size and distribution of nickel phosphate nanoparticles. The substrate can adjust the particle size, distribution, and exposed growth direction of nickel phosphide. These materials with high activity are employed as electrochemical catalysts for methanol oxidation reactions, which is similar to 7 times that of pure nickel phosphide, and there is a very small Tafel slope of 47 mV decade(-1) in the water oxidation reaction. Our results highlight that the substrate structure is essential to catalytic materials for electrochemical oxidation of methanol and water.
机译:掺杂环核镍磷化镍/石墨烯纳米材料是通过将花状镍磷酸盐/石墨烯(NIPOGO)和海胆状镍磷酸盐/化学转化的石墨烯(NIPOG)基材的降低获得的。 所得磷酸镍结构取决于不同种类的含氧基团在石墨烯基材上的影响。 基材也可以影响磷酸镍纳米粒子的粒度和分布。 基材可以调节磷化镍的粒度,分布和暴露的生长方向。 这些具有高活性的材料作为用于甲醇氧化反应的电化学催化剂,其类似于纯磷化镍的7倍,并且在水氧化反应中存在非常小的47mV十年(-1)的Tafel斜率。 我们的结果突出显示底物结构对甲醇和水的电化学氧化催化材料至关重要。

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