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One-Dimensional Heterostructured Palladium Oxide-Cobalt Oxide Catalyst for the Catalytic Oxidation of Methane

机译:甲烷催化氧化的一维异质氧化钯 - 氧化钴催化剂

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摘要

We report a precise synthesis of heterostructured PdO-Co3O4 nanorods through an anion exchange and recrystallization process. Such PdO-Co3O4 nanorods have a more effective catalytic activity and long-term stability for methane oxidation than PdO/Co3O4 catalysts obtained by conventional approaches. The excellent catalytic properties of PdO-Co3O4 nanorods are associated with the synergetic effect between PdO and Co3O4, which not only favors the formation of superoxide species but also enhances the redox properties to provide further methane activation capabilities at low temperatures. Meanwhile, PdO embedded in the Co3O4 domain ensures structural stability and an exceptional resistance towards the sintering of the active sites under thermal conditions.
机译:我们通过阴离子交换和重结晶过程报告了精确合成异质化PDO-CO3O4纳米棒。 这种PDO-CO 3O4纳米棒具有比通过常规方法获得的PDO / CO3O4催化剂更有效的催化活性和用于甲烷氧化的长期稳定性。 PDO-CO3O4纳米棒的优异催化性能与PDO和CO3O4之间的协同效应相关,这不仅有利于超氧化物物种的形成,而且增强了氧化还原性能,以在低温下提供进一步的甲烷活化能力。 同时,嵌入在CO3O4结构域中的PDO确保了在热条件下朝向活性位点烧结的结构稳定性和卓越的抗性。

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