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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Combination of cobalt ferrite and graphene: High-performance and recyclable visible-light photocatalysis
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Combination of cobalt ferrite and graphene: High-performance and recyclable visible-light photocatalysis

机译:钴铁氧体和石墨烯的组合:高性能和可回收的可见光光催化

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摘要

A straightforward strategy was designed for the fabrication of magnetically separable CoFe2O4-graphene photocatalysts with differing graphene content. It is very interesting that the combination of CoFe2O4 nanoparticles with graphene results in a dramatic conversion of the inert CoFe2O4 into a highly active catalyst for the degradation of methylene blue (MB), Rhodamine B (RhB), methyl orange (MO), active black BL-G and active red RGB under visible-light irradiation. The significant enhancement in photoactivity under visible-light irradiation can be ascribed to reduction of graphene oxide, because the photogener-ated electrons of CoFe2O4 can transfer easily from the conduction band to the reduced graphene oxide, effectively preventing a direct recombination of electrons and holes. Hydroxyl radicals play the role of main oxidant in the CoFe2O4-graphene system and the radicals' oxidation reaction is obviously dominant. CoFe2O4 nanoparticles themselves have a strong magnetic property, which can be used for magnetic separation in a suspension system, and therefore the introduction of additional magnetic supports is no longer necessary.
机译:设计了一种简单的策略来制造具有不同石墨烯含量的磁性可分离CoFe2O4-石墨烯光催化剂。非常有趣的是,CoFe2O4纳米颗粒与石墨烯的结合导致惰性CoFe2O4急剧转化为高活性催化剂,可降解亚甲基蓝(MB),若丹明B(RhB),甲基橙(MO),活性黑可见光照射下为BL-G和活性红色RGB。可见光照射下光活性的显着提高可归因于氧化石墨烯的还原,因为CoFe2O4的光生电子可以轻松地从导带转移到还原的氧化石墨烯,有效地防止了电子与空穴的直接复合。羟基自由基在CoFe2O4-石墨烯体系中起主要氧化剂的作用,并且自由基的氧化反应明显占主导地位。 CoFe2O4纳米颗粒本身具有很强的磁性,可用于悬浮系统中的磁性分离,因此不再需要引入其他磁性载体。

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