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Surface nanostructures orienting self-protection of an orthodontic nickel-titanium shape memory alloys wire
作者姓名:NIE  Qiong  JI  ZhuoYu  LIN  JiuXiang  HU  WenPing
作者单位:[1]Department of Orthodontics, School and Hospital of Stomatology, Peking University, Beijing 100081, China [2]National Laboratory for Molecular Sciences, Key Laboratory Of Organic Solids, Instituie of Chemistry, Chinese Academy of Sciences, Beijing 100080, China [3]Graduate University of Chinese Academy of Sciences, Beijing 100039, China
基金项目:Supported by the National Natural Science Foundation of China (Grant No. 30572067) and Ministry of Science and Technology of China The authors appreciated the profound discussion with Prof. Lei Jiang, and the experimental help from Dr. Minrui Li, Dr. Yaling Liu of Institute of Chemistry, Chinese Academy of Sciences.
摘    要:Shape memory alloys (SMA) have been applied to a wide variety of applications in a number of different fields such as aeronautical applications, sensors/actuators, medical sciences as well as orthodontics. It is a hot topic to enhance the anti-corrosion ability of orthodontic wires for clinical applications. In this letter, a very nice fractal structure, micro-domains with identical nanometer sized grooves, was ob- tained on the surfaces of the orthodontic wires with an oxygen plasma and acid corrosion. The concave parts of the grooves were dominated by titanium and convex parts were the same as the bulk wires. The micro-nano fractal structure generated a hydrophobic surface with the largest contact angle to water being about 157°. The titanium dominated nanolayer and the hydrophobicity of the surface resulted in jointly the great improvement of the anti-corrosion ability of the orthodontic wires. Because the fractal structures of the wires were formed automatically when they immersed in acidic environment, hence, the self-protection of the oxygen plasma-treated orthodontic wires in acidic environment indicates their potential applications in orthodontics, and should be also inspirable for other applications of SMA materials.

关 键 词:口腔正畸学  定型器材  合金线  临床研究
收稿时间:28 July 2007
修稿时间:2007-07-28

Surface nanostructures orienting self-protection of an orthodontic nickel-titanium shape memory alloys wire
NIE Qiong JI ZhuoYu LIN JiuXiang HU WenPing.Surface nanostructures orienting self-protection of an orthodontic nickel-titanium shape memory alloys wire[J].Chinese Science Bulletin,2007,52(21):3020-3023.
Authors:Nie Qiong  Ji ZhuoYu  Lin JiuXiang  Hu WenPing
Institution:(1) Department of Orthodontics, School and Hospital of Stomatology, Peking University, Beijing, 100081, China;(2) National Laboratory for Molecular Sciences, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100080, China;(3) Graduate University of Chinese Academy of Sciences, Beijing, 100039, China
Abstract:Shape memory alloys (SMA) have been applied to a wide variety of applications in a number of different fields such as aeronautical applications, sensors/actuators, medical sciences as well as orthodontics. It is a hot topic to enhance the anti-corrosion ability of orthodontic wires for clinical applications. In this letter, a very nice fractal structure, micro-domains with identical nanometer sized grooves, was obtained on the surfaces of the orthodontic wires with an oxygen plasma and acid corrosion. The concave parts of the grooves were dominated by titanium and convex parts were the same as the bulk wires. The micro-nano fractal structure generated a hydrophobic surface with the largest contact angle to water being about 157°. The titanium dominated nanolayer and the hydrophobicity of the surface resulted in jointly the great improvement of the anti-corrosion ability of the orthodontic wires. Because the fractal structures of the wires were formed automatically when they immersed in acidic environment, hence, the self-protection of the oxygen plasma-treated orthodontic wires in acidic environment indicates their potential applications in orthodontics, and should be also inspirable for other applications of SMA materials. Supported by the National Natural Science Foundation of China (Grant No. 30572067) and Ministry of Science and Technology of China
Keywords:nanostructures  self-protection  orthodontics  nickel-titanium shape memory alloys wire
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