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Confinement and surface effects on the physical properties of rhombohedral-shape hematite (α-Fe2O3) nanocrystals

机译:限制和表面效应对菱面体形赤铁矿(α-Fe2O3)纳米晶体的物理性质的影响

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摘要

Morphological, microstructural and vibrational properties of hematite (α-FeO) nanocrystals with a rhombohedral shape and rounded edges, obtained by forced hydrolysis of iron(III) solutions under a fast nucleation, have been investigated in detail as a function of aging time. These studies allowed us to propose a detailed formation mechanism and revealed that these nanocrystals are composed of four {104} side facets, two {110} faces at the edges of the long diagonal of the nanocrystals and two {-441} facets as the top and bottom faces. Also, the presence of nanoscopic pores and fissures was evidenced. The vibrational bands of such nanocrystals were shifted to lower frequencies in comparison with bulk hematite ones as the nanocrystal size was reduced due to phonon confinement effects. Also, the indirect and direct transition band gaps displayed interesting dependences on the aging time arising from quantum confinement and surface effects
机译:通过对铁(III)溶液在快速成核作用下的强力水解而获得的具有菱形六面体和圆形边缘的赤铁矿(α-FeO​​)纳米晶体的形貌,微观结构和振动特性已进行了详细研究,该函数与时效有关。这些研究使我们能够提出详细的形成机理,并揭示了这些纳米晶体由四个{104}侧面,两个{110}侧面(位于纳米晶体的长对角线的边缘)和两个{-441}侧面作为顶部组成和底面。而且,证明存在纳米孔和裂缝。与大型赤铁矿相比,这种纳米晶体的振动带移动到较低的频率,这是由于声子约束效应减小了纳米晶体的尺寸。此外,间接和直接跃迁带隙对量子限制和表面效应引起的老化时间也表现出有趣的依赖性。

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