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Surface effects on the persistence length of nanowires and nanotubes
Hua Liu ; Hualong Song ; Xiqiao Feng ; Jialing Yang ; Hua Liu ; Hualong Song ; Xiqiao Feng ; Jialing Yang
2016-03-30 ; 2016-03-30
关键词surface effect persistence length nanotube nanowire TB383.1
其他题名Surface effects on the persistence length of nanowires and nanotubes
中文摘要Surface effects on the persistence length of quasi-one-dimensional nanomaterials are investigated by using the theory of surface elasticity and the core–shell model of nanobeams. A simple and unified expression is provided to determine the persistence length of nanowires and nanotubes with any regular polygonal cross-sections. It is demonstrated that surface effects have a distinct influence on the persistence length when the characteristic sizes of materials shrink to nanometers. This work is helpful not only for understanding the size-dependent behavior of nanomaterials but also for the design of devices based on nanotubes or nanowires.; Surface effects on the persistence length of quasi-one-dimensional nanomaterials are investigated by using the theory of surface elasticity and the core–shell model of nanobeams. A simple and unified expression is provided to determine the persistence length of nanowires and nanotubes with any regular polygonal cross-sections. It is demonstrated that surface effects have a distinct influence on the persistence length when the characteristic sizes of materials shrink to nanometers. This work is helpful not only for understanding the size-dependent behavior of nanomaterials but also for the design of devices based on nanotubes or nanowires.
语种英语 ; 英语
内容类型期刊论文
源URL[http://ir.lib.tsinghua.edu.cn/ir/item.do?handle=123456789/143810]  
专题清华大学
推荐引用方式
GB/T 7714
Hua Liu,Hualong Song,Xiqiao Feng,et al. Surface effects on the persistence length of nanowires and nanotubes[J],2016, 2016.
APA Hua Liu.,Hualong Song.,Xiqiao Feng.,Jialing Yang.,Hua Liu.,...&Jialing Yang.(2016).Surface effects on the persistence length of nanowires and nanotubes..
MLA Hua Liu,et al."Surface effects on the persistence length of nanowires and nanotubes".(2016).
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