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Zn基柱状ZnO取向生长机制
引用本文:刘长友,王金芳,孙晓燕,王泽温,介万奇.Zn基柱状ZnO取向生长机制[J].无机材料学报,2013,28(3):301-306.
作者姓名:刘长友  王金芳  孙晓燕  王泽温  介万奇
作者单位:(1. 西北工业大学 材料学院 凝固技术国家重点实验室, 西安 710072; 2. 西安理工大学 材料学院, 西安 710032)
基金项目:凝固技术国家重点实验室自主课题(74-QP-2011);西北工业大学基础研究基金(JC20110247);陕西省教育厅科学研究项目(2010JK760)~~
摘    要:通过预氧化处理在Zn基底上制备了ZnO颗粒膜, 并由N2H4·H2O-水热体系制备了Zn基柱状ZnO阵列。实验发现, 在Zn单一晶体学取向表面上柱状ZnO高度有序排列, 据此提出了Zn基柱状ZnO的自由生长取向机制。水热反应条件下, ZnO微晶通常具有沿c轴优先生长的结晶习性, 柱状体高度有序排列取决于ZnO晶核的状态。单一晶体学取向表面上晶核的状态一致, 决定了ZnO柱状体取向一致。Zn基柱状ZnO阵列光致发光谱分析表明, 在30~60 K之间, 近带边激子发射峰强度呈现反常温度依赖的“负热淬灭”现象, 该过程包含了两个无辐射过程和一个负热淬灭过程。

关 键 词:氧化锌  锌基底  取向生长机理  光致发光  
收稿时间:2012-04-11
修稿时间:2012-05-29

Alignment Growth Mechanisms of Rod-like ZnO on Zinc Substrates
LIU Chang-You,WANG Jin-Fang,SUN Xiao-Yan,WANG Ze-Wen,JIE Wan-Qi.Alignment Growth Mechanisms of Rod-like ZnO on Zinc Substrates[J].Journal of Inorganic Materials,2013,28(3):301-306.
Authors:LIU Chang-You  WANG Jin-Fang  SUN Xiao-Yan  WANG Ze-Wen  JIE Wan-Qi
Affiliation:(1. State Key Laboratory of Solidification Processing, School of Materials Science and Engineering, Northwestern Polytechnical University, Xi’an 710072, China; 2. College of Material Science and Engineering, Xi’an University of Technology, Xi’an 710032, China)
Abstract:Discontinuous films of ZnO particles were prepared on zinc substrates by air pre-oxidation process. The arrays of rod-like ZnO nano-/micro- crystals on zinc substrates were synthesized through hydrothermal processing with N2H4·H2O solution. It is found that the rod-like ZnO nano-/micro-crystals align well on the substrate surface with a unique crystallographic orientation. The experimental results suggest a free alignment growth mechanism for rod-like ZnO nano-/micro-crystals on zinc substrates. The crystallization habit of ZnO nano-/micro-crystals is to grow along with the c axis fast under hydrothermal conditions, thus the well alignment of rod-like ZnO nano-/micro-crystals only depends on the state of ZnO nuclei on the substrate surface. The states of ZnO nuclei on the substrate surface with a unique crystallographic orientation well agree with others, which regulates the alignment of rod-like ZnO nano-/micro-crystals. In temperature-dependent photoluminescence spectra, the "negative thermal quenching" phenomenon of near band-gap edge excitons is observed in the temperature ranging from 30 K to 60 K, which identify two non-radiative processes and one negative thermal quenching process.
Keywords:zinc oxide  zinc substrate  alignment growth mechanism  photoluminescence  
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