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Synthesis and reaction temperature-tailored self-assembly of copper sulfide nanoplates

机译:合成和反应temperature-tailored自组装的硫化铜nanoplates

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摘要

Nanostructured copper sulfides have attracted much attention due to their unique electronic and optical properties and potential applications in many areas. This article presents a high-temperature precursor-injection method to synthesize covellite copper sulfide (CuS) nanoplates by using oleylamine as capping ligands. The synthesized CuS nanoplates were found to be self-assembled into face-to-face one-dimensional columnar arrays with the longest column of 0.75 μm. Further studies showed that the reaction temperature has strong effects on the size, size distribution and the self-assembly behaviors of the CuS nanoplates. The self-assembly behaviors were found to be tuned by the reaction temperature. in the range of 140-180 °C, the face-to-face self-assembly is formed over the entire substrate, whereas only edge-to-edge arrangements were observed at the reaction temperature of 200 °C. As the temperature further increases, the product exhibits a mixture of large and small nanocrystals and there is not any presence of self-assembly. The present study highlights the size-controlled synthesis of copper sulfide nanoplates and their self-assembly behaviors dependent on reaction temperature.
机译:纳米铜硫化物吸引了由于其独特的电子和关注光学性质和潜在的应用许多地区。高温precursor-injection方法合成硫化铜蓝铜(CuS)nanoplates利用油酰胺作为限制配体。发现自组装成面对面一维柱状和最长的数组专栏0.75μm。反应温度有很强的影响大小、粒度分布和自组装CuS nanoplates的行为。自组装行为被发现被调整反应温度。°C,面对面的自组装形成整个衬底,而只有边缘安排被观察到的反应温度为200°C。增加,产品展示的混合物大型和小型纳米晶体和没有自组装的存在。突出了size-controlled合成硫化铜nanoplates及其自组装行为取决于反应温度。

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