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首页> 外文期刊>Nanoscale >Nanoscale copper sulfide hollow spheres with phase-engineered composition: covellite (CuS), digenite (Cu_(1.8)S), chalcocite (Cu2S)
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Nanoscale copper sulfide hollow spheres with phase-engineered composition: covellite (CuS), digenite (Cu_(1.8)S), chalcocite (Cu2S)

机译:纳米硫化铜空心球体phase-engineered组成:铜蓝(CuS),蓝辉铜矿(Cu_(1.8)年代),辉铜矿(忍耐力)

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摘要

Covellite (CuS), digenite (Cu_(1.8)S) and chalcocite (Cu2S) are prepared as nanoscaled hollow spheres by reaction at the liquid-to-liquid phase boundary of a w/o-microemulsion. According to electron microscopy (SEM, STEM, TEM, HRTEM) the hollow spheres exhibit an outer diameter of 32-36 nm, a wall thickness of 8-12 nm and an inner cavity of 8-16 nm in diameter. The phase composition is determined based on HRTEM, electron-energy loss spectroscopy, X-ray powder diffraction and thermal analysis. In face of the advanced morphology of the hollow spheres, precise control of its phase composition is nevertheless possible by adjusting the experimental conditions (i.e. type and concentration of the copper precursor, concentration of ammonia inside of the micelle). Such phase-engineering of nanoscale hollow spheres is firstly observed and might allow adjusting even further compositions/structures as well as tailoring of phase-specific properties in the future.
机译:铜蓝(CuS)、蓝辉铜矿(Cu_ (1.8))辉铜矿(忍耐力)准备为纳米级空心球的反应liquid-to-liquid阶段的边界w / o-microemulsion。显微镜(SEM、茎、TEM、HRTEM)空心球体展览32-36海里的外径,a8 - 12海里和内腔的壁厚8-16 nm直径。介绍基础上,确定电子能量损失光谱、x射线粉末衍射和热分析。形态学的空心球体,精确控制的相成分仍然是可能的通过调整实验条件(即。类型和浓度的铜前体,氨浓度的胶束)。这样的phase-engineering纳米空心球体是首先观察到,可能会允许的进一步调整成分/结构裁剪分阶段属性未来。

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