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首页> 外文期刊>Journal of Materials Science >Controlled synthesis of hierarchical CuS architectures by a recrystallization growth process in a microemulsion system
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Controlled synthesis of hierarchical CuS architectures by a recrystallization growth process in a microemulsion system

机译:在微乳液系统中通过重结晶生长过程控制CuS体系结构的合成

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Nano- and micro-sized hierarchical copper monosulfide (CuS) architectures composed of nanoplates have been successfully synthesized via a recrystallization growth process in a microemulsion system. In our method, the spatial separation of two reactants and low-reaction temperature can decrease the rate of growth of the CuS nuclei, resulting in the formation of the poorly crystallized CuS aggregates in an oil-in-water (o/w) microemulsion. The hierarchical CuS nanostructures are formed easilyfrom poorly crystallized CuS by a recrystallization growth process at a higher temperature. Furthermore, the flowerlike CuS architectures can be obtained by a kinetically controlled dissolution-recrystallization mechanism. In addition, the photocatalytic activity of the hierarchical CuS architectures has been evaluated by the degradation of methylene blue solution in the presence of hydrogen peroxide under natural light, showing that the as-preparedhierarchical CuS architectures exhibit high-photocatalytic activity for the degradation of methylene blue.
机译:在微乳液系统中,通过重结晶生长过程成功地合成了由纳米板组成的纳米级和微米级分级单硫化铜(CuS)结构。在我们的方法中,两种反应物的空间分离和低反应温度会降低CuS核的生长速率,从而导致在水包油(o / w)微乳液中形成结晶不良的CuS聚集体。通过在较高温度下的重结晶生长过程,容易从结晶不良的CuS形成分层的CuS纳米结构。此外,可以通过动力学控制的溶解-重结晶机制获得花状CuS结构。此外,通过在自然光下在过氧化氢存在下亚甲基蓝溶液的降解,评估了等级CuS体系结构的光催化活性,表明所制备的等级CuS体系结构对亚甲基蓝的降解显示出高光催化活性。 。

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