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首页> 外文期刊>ACS Omega >Role of Rare Earth Elements and Entropy on the Anatase-To-Rutile Phase Transformation of TiO2 Thin Films Deposited by Ion Beam Sputtering
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Role of Rare Earth Elements and Entropy on the Anatase-To-Rutile Phase Transformation of TiO2 Thin Films Deposited by Ion Beam Sputtering

机译:稀土元素和熵对离子束溅射沉积的TiO2薄膜锐钛矿对金红石相变的作用

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摘要

The role played by oxygen vacancies and rare earth (RE) elements in the anatase-to-rutile (A–R) phase transformation of titanium dioxide (TiO_(2)) is still a matter of controversy. Here, we report the A–R transformation of TiO_(2) thin solid films as obtained by ion beam sputtering a RE-decorated titanium target in an oxygen-rich atmosphere. The samples correspond to undoped, single-doped (Sm, Tm, and Tb), and codoped (Sm:Tb, Sm:Tm, and Sm:Tb:Tm) TiO_(2) films. In the as-prepared form, the films are amorphous and contain ~0.5 at. % of each RE. The structural modifications of the TiO_(2) films due to the RE elements and the annealing treatments in an oxygen atmosphere are described according to the experimental results provided by Raman scattering, X-ray photoelectron spectroscopy, and optical measurements. The A–R transformation depends on both the annealing temperature and the characteristics of the undoped, single-doped, and codoped TiO_(2) films. As reported in the literature, the A–R transformation can be inhibited or enhanced by the presence of impurities and is mostly related to energetic contributions. The experimental results were analyzed, considering the essential and stabilizing role of the entropy of mixing in the A–R transformation due to the introduction of more and multiple quantum states originated in vacancies and impurities in the anatase phase.
机译:氧空位和稀土(RE)元素在二氧化钛(TiO_(2))中的氧酶 - 金金红石(A-R)相变(TiO_(2))中的作用仍然是争议的问题。在这里,我们报告了通过离子束溅射在富氧气氛中通过离子束溅射的TiO_(2)薄实心膜的A-R转化。样品对应于未掺杂,单掺杂(SM,TM和TB)和编码(SM:TB,SM:TM,SM:TB:TM)TiO_(2)膜。在以制备的形式中,薄膜是无定形的,含有〜0.5。每个RE的百分比。根据Raman散射,X射线光电子电子元件光谱和光学测量提供的实验结果,描述了由于RE元件和氧气气氛中的退火处理引起的TiO_(2)膜的结构修饰。 A-R转化取决于退火温度和未掺杂的单掺杂和编码的TiO_(2)膜的试验温度和特性。如文献中所报道的,通过杂质的存在,可以抑制或增强A-R转化,大多数与能量贡献相关。分析了实验结果,考虑到熵在A-R转化中的熵的基本和稳定作用导致的熵在锐钛矿相中的空位和杂质中源于空位和杂质。

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