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首页> 外文期刊>Nanoscale >Real- time direct transmission electron microscopy imaging of phase and morphology transformation from solid indium oxide hydroxide to hollow corundum- type indium oxide nanocrystallites
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Real- time direct transmission electron microscopy imaging of phase and morphology transformation from solid indium oxide hydroxide to hollow corundum- type indium oxide nanocrystallites

机译:实时直接透射电子显微镜成像阶段和形态变换从固体氢氧化铟氧化物空心刚玉,氧化铟nanocrystallites类型

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摘要

A time-resolved series of high-resolution transmission electron microscopy (HRTEM) images are used to monitor phase and morphology transformation of rod-like and spherical particles with the initial orthorhombic InOOH phase in situ under continuous illumination with high-energy electrons in a transmission electron microscope. For both particle types, the electron-beam irradiation induces a fast InOOH to rh-In2O3 decomposition accompanied by the formation of voids within the particle/rod center. After illumination time intervals of about 1-2 min (i.e. electron dose 6.3-12.6 x 10(7) e nm(-2)) for particles and 8 min (4.3 x 10(8) e nm(-2)) for rods, respectively, several small empty cavities become visible in the particle/rod center. The cavities coalesce and form a large hollow space/canal after further illumination. Time-resolved in situ HRTEM unambiguously shows that the formation of internal voids in both nanoparticle types is a consequence of the structural InOOH-to-rh-In2O3 phase transition that starts at the surface of the corresponding particle. The as-formed oxide phase encapsulates the untransformed hydroxylated phase. Its decomposition does not follow the Kirkendall mechanism; the matter transferred outwards is removed in the form of water, leading to void formation inside without an increase of the particle size.
机译:高分辨率的时间分辨系列透射电子显微镜(HRTEM)图像用于监控阶段和形态是什么转换的棒状和球形粒子的初始斜方晶系的InOOH下阶段原位连续照明高能电子透射电子显微镜。电子束辐照诱发快速InOOHrh-In2O3分解伴随着在粒子/杆形成空洞中心。大约1 - 2分钟(即电子剂量6.3 - -12.6 x10 (7) e纳米粒子和8分钟(2))(4.3 x10 (8) e纳米棒(2)),分别几个小空腔成为可见的粒子/杆中心。形成一个大中空的空间/运河经过进一步照明。明确显示的形成纳米颗粒类型是一个内部的空洞结构InOOH-to-rh-In2O3的结果从表面开始的相变相应的粒子。阶段封装untransformed羟化阶段。柯肯特尔机制;外被移除以水的形式,在不增加孔隙的形成粒子的大小。

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