首页> 外文期刊>Materials Chemistry and Physics. >Doping-induced microstructural, textural and optical properties of In_2Ti_(1-x)V_xO_(5+δ) semiconductors and their role in the photocatalytic splitting of water
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Doping-induced microstructural, textural and optical properties of In_2Ti_(1-x)V_xO_(5+δ) semiconductors and their role in the photocatalytic splitting of water

机译:In_2Ti_(1-x)V_xO_(5 +δ)半导体的掺杂诱导的微结构,组织和光学性质及其在水的光催化裂解中的作用

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摘要

The physicochemical properties of V-doped indium titanates (In_2Ti_(1-x)V_xO_(5+δ), 0.0 ≤x≤ 0.2) were investigated by using XPS, powder XRD, UV-vis, SEM and luminescence spectroscopy techniques. The Rietveld refinement of XRD data revealed that even though the V-containing samples were isostructural with In_2TiO_5 (orthorhombic space group Pnma), a systematic x-dependent variation was noticeable in the Ti-0 bond lengths in [TiO_6] octahedral units, cell parameters and in the value of S. XPS results confirmed the coexistence of V~(5+) and V~(4+) states, leading thereby to an enhancement in oxygen non-stoichiometry in the doped samples. A loading-dependent progressive shift from 400 to 750 nm was also observed in the onset of the absorption edge, indicating a significant narrowing of the band gap. Furthermore, the samples with higher V-content were comprised of the grain clusters having larger size and an irregular shape. The UV-vis, photoluminescence and thermoluminescence studies indicate that the doping-induced lattice defects may give rise to certain closely spaced acceptor/donor energy levels in between the band gap of host matrix. The indium titanates are found to serve as stable photocatalysts for water splitting under visible light, where oxygen was the major reaction product. The role of microstructural and morphological properties in the photocatalytic activity is discussed.
机译:利用XPS,粉末XRD,UV-vis,SEM和发光光谱技术研究了掺V的钛酸铟(In_2Ti_(1-x)V_xO_(5 +δ),0.0≤x≤0.2)的理化性质。 XRD数据的Rietveld改进显示,即使含V的样品与In_2TiO_5(斜方空间群Pnma)是同构的,在[TiO_6]八面体单元的Ti-0键长,细胞参数方面,系统的x依赖性变化仍很明显XPS结果证实了V〜(5+)和V〜(4+)状态的共存,从而导致掺杂样品中氧非化学计量的提高。在吸收边缘的开始也观察到了从400nm到750nm的依赖于负荷的逐渐变化,这表明带隙显着变窄。此外,具有较高V含量的样品由具有较大尺寸和不规则形状的晶粒簇组成。紫外可见光,光致发光和热致发光研究表明,掺杂引起的晶格缺陷可能会在基质基质带隙之间引起某些紧密间隔的受体/供能能级。发现钛酸铟用作在可见光下水分解的稳定光催化剂,其中氧气是主要反应产物。讨论了微观结构和形态性质在光催化活性中的作用。

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