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高分辨率原位环境透射电镜的发展与应用 被引量:5
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作者 章效锋 《电子显微学报》 CAS CSCD 北大核心 2010年第3期287-294,共8页
材料受周围环境的影响而产生的结构或成分变化一直都是材料科学和工业研发领域最关注的方向之一。随着材料研究的纳米化,外场导致的材料在亚纳米或原子尺度上的结构变化越来越成为认知材料宏观和纳米材料特性之根本。在诸如纳米催化剂... 材料受周围环境的影响而产生的结构或成分变化一直都是材料科学和工业研发领域最关注的方向之一。随着材料研究的纳米化,外场导致的材料在亚纳米或原子尺度上的结构变化越来越成为认知材料宏观和纳米材料特性之根本。在诸如纳米催化剂的催化机制,材料的氧化-还原机制,纳米材料的生长或受力形变,电、磁场对材料纳米尺度结构的影响及微量气体探测等很多研究中有许多问题都需要一种特殊的电子显微镜即高分辨率原位环境电镜来帮助寻求答案。本文简要地回顾了环境透射电镜技术的发展思路,对于现代气体环境透射电镜的主流技术作了初步介绍,特别强调了高分辨率环境电镜的重要性以及在环境电镜中实现高分辨率所需要关注的一些技术环节,并力图通过具体实验实例使读者充分了解高分辨率原位环境电镜在材料科学研究中的重要性。 展开更多
关键词 原位环境透射电镜 高分辨率 材料动态结构变化
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Oxidation behavior of cobalt nanoparticles studied by in situ environmental transmission electron microscopy 被引量:4
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作者 Dejiong Zhang Chuanhong Jin +2 位作者 Z.Y.Li Ze Zhang Jixue Li 《Science Bulletin》 SCIE EI CAS CSCD 2017年第11期775-778,共4页
The dynamics of oxidation of cobalt nanoparticles were directly revealed by in situ environmental transmission electron microscopy.Firstly,cobalt nanoparticles were oxidized to polycrystalline cobalt monoxide,then to ... The dynamics of oxidation of cobalt nanoparticles were directly revealed by in situ environmental transmission electron microscopy.Firstly,cobalt nanoparticles were oxidized to polycrystalline cobalt monoxide,then to polycrystalline tricobalt tetroxide,in the presence of oxygen with a low partial pressure.Numerous cavities(or voids) were formed during the oxidation,owing to the Kirkendall effect.Analysis of the oxides growth suggested that the oxidation of cobalt nanoparticles followed a parabolic rate law,which was consistent with diffusion-limited kinetics.In situ transmission electron microscopy allowed potential atomic oxidation pathways to be considered.The outward diffusion of cobalt atoms inside the oxide layer controlled the oxidation,and formed the hollow structure.Irradiation by the electron beam,which destroyed the sealing effect of graphite layer coated on the cobalt surface and resulted in fast oxidation rate,played an important role in activating and promoting the oxidations.These findings further our understanding on the microscopic kinetics of metal nanocrystal oxidation and knowledge of energetic electrons promoting oxidation reaction. 展开更多
关键词 COBALT Nanoparticle Oxidation dynamics Parabolic rate Environmental transmission electron microscopy (ETEM) Electron irradiation
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