Existing Form of Zinc Oxide and Phase Transformation for Zinc Oxide Encapsulated in Mesoporous Silica
来源期刊:JOURNAL OF MATERIALS SCIENCE TECHNOLOG2013年第9期
论文作者:Qingshan Lu Guohong Yun Wenping Zhou Jiangong Li
文章页码:841 - 845
摘 要:Nanocomposites of ZnO encapsulated in mesoporous silica were prepared by wetness impregnation and calcination.The samples were characterized by X-ray diffraction,transmission electron microscopy,nitrogen adsorptione desorption isotherms,and X-ray photoelectron spectroscopy.The effects of ZnO content and thermal treatment on the existing form of ZnO as well as phase transformation were investigated.ZnO exists stably in the form of non-crystalline phase or cluster when crystallite size is small.With increasing ZnO content,as the size of ZnO reaches a critical size of crystalline phase,the non-crystalline ZnO or cluster transforms structurally to crystalline ZnO with low energy state.Besides,Zn2 SiO4 was obtained by solid-state reaction between ZnO and mesoporous silica.The mesoporous silica acts as not only a reactant but also a diffusion barrier which inhibits the phase transformation from β-Zn2SiO4 to α-Zn2SiO4.The formation temperature of Zn2SiO4 is lower than that of conventional solid-state reaction because of the unique structure of mesoporous silica.
Qingshan Lu1,Guohong Yun1,2,Wenping Zhou1,Jiangong Li3
1. Inner Mongolia Key Laboratory of Nanomagnetic and Functional Materials and College of Physical Science and Technology, Inner Mongolia University2. College of Physics and Electronic Information, Inner Mongolia Normal University3. Institute of Materials Science and Engineering, Lanzhou University
摘 要:Nanocomposites of ZnO encapsulated in mesoporous silica were prepared by wetness impregnation and calcination.The samples were characterized by X-ray diffraction,transmission electron microscopy,nitrogen adsorptione desorption isotherms,and X-ray photoelectron spectroscopy.The effects of ZnO content and thermal treatment on the existing form of ZnO as well as phase transformation were investigated.ZnO exists stably in the form of non-crystalline phase or cluster when crystallite size is small.With increasing ZnO content,as the size of ZnO reaches a critical size of crystalline phase,the non-crystalline ZnO or cluster transforms structurally to crystalline ZnO with low energy state.Besides,Zn2 SiO4 was obtained by solid-state reaction between ZnO and mesoporous silica.The mesoporous silica acts as not only a reactant but also a diffusion barrier which inhibits the phase transformation from β-Zn2SiO4 to α-Zn2SiO4.The formation temperature of Zn2SiO4 is lower than that of conventional solid-state reaction because of the unique structure of mesoporous silica.
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