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Nanoscratch study of Zn                         1-x                         Mn                         x                         O heteroepitaxial layers
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Nanoscratch study of Zn 1-x Mn x O heteroepitaxial layers

Yu-Ming Chang, Zue-Chin Chang, Derming Lian, Chu-Shou Yang, Wei-Hung Yau, Chien-Huang Tsai, Wen-Fa WuChang-Pin Chou
Applied Surface Science, 卷.257(1), 頁碼.37-41
10/2010

摘要

Molecular beam epitaxy Scanning electron microscopy Transmission electron microscopy Chemistry (all) Condensed Matter Physics Physics and Astronomy (all) Surfaces and Interfaces Surfaces Coatings and Films
We investigated the nanotribological properties of Zn 1-x Mn x O epilayers (0 ≤ x ≤ 0.16) grown by molecular beam epitaxy (MBE) on sapphire substrates. The surface roughness and friction coefficient (μ) were analyzed by means of atomic force microscopy (AFM) and hysitron triboscope nanoindenter techniques. The nanoscratch system gave the μ value of the films ranging from 0.17 to 0.07 and the penetration depth value ranging 294-200 nm when the Mn content was increased from x = 0 to 0.16. The results strongly indicate that the scratch wear depth under constant load shows that higher Mn content leads to Zn 1-x Mn x O epilayers with higher shear resistance, which enhances the Mn-O bond. These findings reveal that the role of Mn content on the growth of Zn 1-x Mn x O epilayers can be identified by their nanotribological behavior. © 2010 Elsevier B.V. All rights reserved.

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