宋金会

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教授

博士生导师

硕士生导师

性别:男

毕业院校:佐治亚理工学院

学位:博士

所在单位:机械工程学院

学科:光学工程. 材料学. 物理电子学

办公地点:机械工程学院7021

联系方式:Assistant Phone: +86 18829785899

电子邮箱:jhsong@dlut.edu.cn

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Size-dependent Young's modulus in ZnO nanowires with strong surface atomic bonds

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论文类型:期刊论文

发表时间:2018-03-23

发表刊物:NANOTECHNOLOGY

收录刊物:SCIE、EI、PubMed、Scopus

卷号:29

期号:12

页面范围:125702

ISSN号:0957-4484

关键字:Young's modulus characterization; nanomaterials property; size-dependent; ZnO nanowire

摘要:The mechanical properties of size-dependent nanowires are important in nano-electro-mechanical systems (NEMSs), and have attracted much research interest. Characterization of the size effect of nanowires in atmosphere directly to broaden their practical application instead of just in high vacuum situations, as reported previously, is desperately needed. In this study, we systematically studied the Young's modulus of vertical ZnO nanowires in atmosphere. The diameters ranged from 48 nm to 239 nm with a resonance method using non-contact atomic force microscopy. The values of Young's modulus in atmosphere present extremely strong increasing tendency with decreasing diameter of nanowire due to stronger surface atomic bonds compared with that in vacuum. A core-shell model for nanowires is proposed to explore the Young's modulus enhancement in atmosphere, which is correlated with atoms of oxygen occurring near the nanowire surface. The modified model is more accurate for analyzing the mechanical behavior of nanowires in atmosphere compared with the model in vacuum. Furthermore, it is possible to use this characterization method to measure the size-related elastic properties of similar wire-sharp nanomaterials in atmosphere and estimate the corresponding mechanical behavior. The study of the size-dependent Young's modulus in ZnO nanowires in atmosphere will improve the understanding of the mechanical properties of nanomaterials as well as providing guidance for applications in NEMSs, nanogenerators, biosensors and other related areas.