首页> 外文期刊>Journal of Laser Micro/Nanoengineering >Control of Electrical Resistance and Temperature of Titanium Dioxide Film by Local Heating with CW Fiber Laser
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Control of Electrical Resistance and Temperature of Titanium Dioxide Film by Local Heating with CW Fiber Laser

机译:连续波光纤激光器局部加热控制二氧化钛薄膜的电阻和温度

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Titanium dioxide (TiO2) film has photocatalytic properties and good biocompatibility. To ex-pand the film application, formation of oxygen deficiencies in the film was one of the useful meth-ods. Electrical resistance of the film can be decreased due to oxygen deficiencies formation. The lo-cal heating process in vacuum is a useful method to create the oxygen deficiencies in local area of the film. Electrical resistance might be locally decreased by local heating with a CW fiber laser. In our experiment, the films were irradiated with the laser in vacuum. Control of temperature on the film was very important for reducing the electrical resistance. Therefore, temperature monitoring of the laser focusing spot area on the film was performed. Temperature of the laser focusing spot area was increased as the laser intensity was increased. Then, the electrical resistance of the laser focus-ing spot area was decreased as the laser intensity was increased. Thus, electrical resistance of the la-ser focusing spot area was decreased as temperature of the laser focusing spot area was increased. These results indicated that electrical resistance of the laser focusing spot area was controlled by changing temperature on the laser focusing spot area.
机译:二氧化钛(TiO2)膜具有光催化性能和良好的生物相容性。为了扩展膜的应用,在膜中形成氧缺乏是有用的方法之一。膜的电阻可由于形成氧缺陷而降低。真空中的局部加热过程是在薄膜局部区域产生缺氧的有用方法。通过使用CW光纤激光器进行局部加热可以局部降低电阻。在我们的实验中,在真空中用激光照射薄膜。膜上温度的控制对于降低电阻非常重要。因此,对膜上的激光聚焦点区域进行了温度监视。激光聚焦点区域的温度随着激光强度的增加而增加。然后,随着激光强度的增加,激光聚焦点区域的电阻减小。因此,随着激光聚焦点区域的温度升高,激光聚焦点区域的电阻减小。这些结果表明,通过改变激光聚焦点区域上的温度来控制激光聚焦点区域的电阻。

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