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首页> 外文期刊>AIP Advances >Anomalous behavior of B1g mode in highly transparent anatase nano-crystalline Nb-doped Titanium Dioxide (NTO) thin films
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Anomalous behavior of B1g mode in highly transparent anatase nano-crystalline Nb-doped Titanium Dioxide (NTO) thin films

机译:B1g模式在高度透明的锐钛矿型纳米Nb掺杂二氧化钛(NTO)薄膜中的异常行为

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The effect of Niobiumdoping and size of crystallites on highly transparent nano-crystalline NiobiumdopedTitanium Dioxide (NTO) thin films with stable anatase phase are reported. The Nbdoping concentration is varied within the solubility limit in TiO2 lattice. Films were annealed in controlled environment for improving the crystallinity and size of crystallites. Elemental and thickness analysis were carried out using Rutherford backscattering spectrometry and cross sectional field emission scanning electron microscopy. Structural characteristics reveal a substitutional incorporation of Nb+5 in the TiO2 lattice which inhibits the anatase crystallites growth with increasing the doping percentage. The micro-Raman (MR) spectra of films with small size crystallites shows stiffening of about 4 cm?1 for the Eg(1) mode and is ascribed to phonon confinement and non-stoichiometry. In contrast, B1g mode exhibits a large anomalous softening of 20 cm?1 with asymmetrical broadening; which was not reported for the case of pure TiO2 crystallites. This anomalous behaviour is explained by contraction of the apical Ti-O bonds at the surface upon substitutional Nb5+doping induced reduction of Ti4+ ions also known as hetero-coordination effect. The proposed hypotheses is manifested through studying the electronic structure and phonon dynamics by performing the near edge x-ray absorption fine structure(NEXAFS) and temperature dependent MR down to liquid nitrogen temperature on pure and 2.5 at.% doped NTO films, respectively.
机译:报道了铌掺杂和微晶尺寸对具有稳定的锐钛矿相的高度透明的纳米掺杂铌氧化钛(NTO)薄膜的影响。 Nb掺杂浓度在TiO 2晶格中的溶解度极限内变化。在受控的环境中对薄膜进行退火,以改善结晶度和微晶尺寸。元素和厚度分析使用卢瑟福背散射光谱法和横截面场发射扫描电子显微镜进行。结构特征表明,Nb + 5在TiO2晶格中的取代结合,随着掺杂百分比的增加,抑制了锐钛矿晶体的生长。具有小尺寸微晶的薄膜的显微拉曼光谱表明,Eg(1)模式的刚度约为4 cm?1,归因于声子限制和非化学计量。相比之下,B1g模式表现出20 cm?1的较大的异常软化并具有不对称的展宽。对于纯TiO2微晶没有报道。这种异常行为可以通过在Nb5 +掺杂引起的Ti4 +离子的还原还原时,表面Ti-O键的收缩来解释,这也称为杂配作用。通过研究电子结构和声子动力学,通过分别在纯氮掺杂薄膜和2.5at。%掺杂NTO薄膜上进行近边缘X射线吸收精细结构(NEXAFS)和温度依赖性MR直至液氮温度,来证明所提出的假设。

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