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首页> 外文期刊>Surface review and letters >Ex situ atomic force microscopy studies of growth mechanisms of manganese mercury thiocyanate crystals
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Ex situ atomic force microscopy studies of growth mechanisms of manganese mercury thiocyanate crystals

机译:硫氰酸汞汞晶体生长机理的异位原子力显微镜研究

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摘要

Growth mechanisms of the {110} planes of the manganese mercury thiocyanate, MnHg(SCN)(4) (MMTC), crystals have been investigated by using atomic force microscopy (AFM). The results show that spiral dislocation controlled mechanism and two-dimensional (2D) nucleation mechanism operate simultaneously during growth. 2D nuclei are found to cover up the outcrop of dislocation hillocks. Pairs of circular 2D nuclei appear on the wider steps terraces and the slope of 2D nucleation islands. Hillocks introduced by both simple spiral dislocation sources and 2D nucleation are elliptical in shape. It is determined the long sides orientate along the c-direction or the direction about 45 degrees to the c-axis. Anisotropic growth hillocks and isotropic 2D nuclei coexist on the surface, which may be due to unequal supersaturations in the mother solution during the evaporation process.
机译:硫氰酸锰汞MnHg(SCN)(4)(MMTC)的{110}面的生长机理已通过原子力显微镜(AFM)进行了研究。结果表明,螺旋位错控制机制和二维(2D)成核机制在生长过程中同时起作用。发现二维核掩盖了位错丘陵的露头。成对的圆形2D原子核出现在更宽的台阶阶地和2D原子核岛的坡度上。由简单的螺旋位错源和二维成核引入的小丘形状为椭圆形。确定长边沿c方向或相对于c轴约45度的方向取向。各向异性生长小丘和各向同性2D核共存于表面,这可能是由于蒸发过程中母液中过饱和度不相等所致。

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