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High catalytic activity of oriented 2.0.0 copper(I) oxide grown on graphene film

机译:石墨烯薄膜上生长的取向2.0.0氧化铜(I)的高催化活性

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Metal oxide nanoparticles supported on graphene exhibit high catalytic activity for oxidation, reduction and coupling reactions. Here we show that pyrolysis at 900?°C under inert atmosphere of copper(II) nitrate embedded in chitosan films affords 1.1.1 facet-oriented copper nanoplatelets supported on few-layered graphene. Oriented (1.1.1) copper nanoplatelets on graphene undergo spontaneous oxidation to render oriented (2.0.0) copper(I) oxide nanoplatelets on few-layered graphene. These films containing oriented copper(I) oxide exhibit as catalyst turnover numbers that can be three orders of magnitude higher for the Ullmann-type coupling, dehydrogenative coupling of dimethylphenylsilane with n -butanol and C–N cross-coupling than those of analogous unoriented graphene-supported copper(I) oxide nanoplatelets.
机译:负载在石墨烯上的金属氧化物纳米颗粒对氧化,还原和偶联反应表现出高催化活性。在这里,我们显示了在惰性气氛下于900°C的高温下热解壳聚糖薄膜中埋藏的硝酸铜(II)提供了在薄层石墨烯上负载的1.1.1面取向铜纳米片。石墨烯上的取向(1.1.1)铜纳米片会自发氧化,从而在几层石墨烯上形成取向(2.0.0)的氧化铜(I)纳米片。这些包含定向氧化铜(I)的薄膜作为Ullmann型偶联,二甲基苯基硅烷与正丁醇的脱氢偶联以及C–N交叉偶联的催化剂周转数比类似的未定向石墨烯高3个数量级。负载的氧化铜(I)纳米片。

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