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首页> 外文期刊>Nature Communications >In situ oxidation of carbon-encapsulated cobalt nanocapsules creates highly active cobalt oxide catalysts for hydrocarbon combustion
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In situ oxidation of carbon-encapsulated cobalt nanocapsules creates highly active cobalt oxide catalysts for hydrocarbon combustion

机译:碳包裹的钴纳米胶囊的原位氧化产生用于烃燃烧的高活性氧化钴催化剂

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Combustion catalysts have been extensively explored to reduce the emission of hydrocarbons that are capable of triggering photochemical smog and greenhouse effect. Palladium as the most active material is widely applied in exhaust catalytic converter and combustion units, but its high capital cost stimulates the tremendous research on non-noble metal candidates. Here we fabricate highly defective cobalt oxide nanocrystals via a controllable oxidation of carbon-encapsulated cobalt nanoparticles. Strain gradients induced in the nanoconfined carbon shell result in the formation of a large number of active sites featuring a considerable catalytic activity for the combustion of a variety of hydrocarbons (methane, propane and substituted benzenes). For methane combustion, the catalyst displays a unique activity being comparable or even superior to the palladium ones.
机译:燃烧催化剂已被广泛研究以减少能够触发光化学烟雾和温室效应的碳氢化合物的排放。钯作为最活跃的材料已广泛应用于排气催化转化器和燃烧装置,但其高昂的投资成本刺激了对非贵金属候选物的大量研究。在这里,我们通过碳包封的钴纳米颗粒的可控氧化来制造高度缺陷的钴氧化物纳米晶体。在纳米约束碳壳中诱导的应变梯度导致形成大量活性位点,这些活性位点具有可催化多种烃(甲烷,丙烷和取代苯)燃烧的催化活性。对于甲烷燃烧,该催化剂显示出与钯相当或什至更好的独特活性。

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