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首页> 外文期刊>Journal of Materials Research >Amorphous to anatase transformation in atomic layer deposited titania thin films induced by hydrothermal treatment at 120 ℃
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Amorphous to anatase transformation in atomic layer deposited titania thin films induced by hydrothermal treatment at 120 ℃

机译:120℃水热处理引起原子层沉积二氧化钛薄膜的非晶态向锐钛矿转变

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Hydrothermal treatment has been applied successfully to convert amorphous titania films to crystalline anatase at 120 ℃, a temperature compatible with most polymeric substrates. The amorphous films were deposited at 80 ℃ using atomic layer deposition (ALD). The crystallinity of the films was monitored by x-ray absorption near edge structure (XANES), and the film composition was determined by x-ray photoelectron spectroscopy (XPS). The effect of precursor chemistry and substrate material was investigated. It was found that titania films produced from Ti isopropoxide are easier to crystallize than those from Ti tetrachloride as the Ti precursor. The amorphous to crystalline transformation can be achieved more readily with films deposited on Si than polycarbonate substrates. The effect of a "seed" layer on the amorphous to crystalline transformation was also studied. Preformed anatase crystallites between the Si substrate and the amorphous film were shown to accelerate the crystallization process. The possible mechanisms responsible for the phase transformation are discussed.
机译:水热处理已成功地应用于在120℃(与大多数聚合物基材相容的温度)下将无定形二氧化钛薄膜转化为结晶锐钛矿。使用原子层沉积(ALD)在80℃下沉积非晶膜。通过近边缘结构的X射线吸收(XANES)监测膜的结晶度,并通过X射线光电子能谱法(XPS)确定膜的组成。研究了前驱物化学和底物材料的影响。发现由异丙醇钛生产的二氧化钛膜比由四氯化钛作为钛前体的二氧化钛膜更容易结晶。与聚碳酸酯衬底相比,用沉积在Si上的薄膜可以更容易地实现无定形到晶体的转变。还研究了“种子”层对无定形到结晶转变的影响。显示在硅衬底和非晶膜之间的预形成的锐钛矿微晶加速了结晶过程。讨论了负责相变的可能机制。

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