首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Observation of Optical Band-Gap Narrowing and Enhanced Magnetic Moment in Co-Doped Sol-Gel-Derived Anatase TiO2 Nanocrystals
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Observation of Optical Band-Gap Narrowing and Enhanced Magnetic Moment in Co-Doped Sol-Gel-Derived Anatase TiO2 Nanocrystals

机译:共掺杂溶胶 - 凝胶衍生锐钛矿TiO2纳米晶体中光带间隙变窄和增强磁矩的观察

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摘要

The magnetic behavior of TiO2 and doped TiO2 nanocrystals has been a challenge due to the unambiguous nature of defects present in oxide semiconductors. Here, a simple, low-temperature sol gel method is developed for the synthesis of low-dimensional and highly efficient stable anatase TiO2 nanocrystals. The X-ray powder diffraction pattern and Raman spectra confirm the formation of a single-phase anatase structure of TiO2. High-resolution transmission electron microscopy studies reveal the crystalline nature of the sol gel-derived nanocrystals. The increase in lattice parameters together with the shifting and broadening of the most intense E-g(1) mode in micro-Raman spectra of Co-doped TiO2 nanocrystals indicate the incorporation of Co in TiO2. Shifting of the absorption edge to the visible region in UV-visible spectra indicates narrowing of the band gap due to Co incorporation in TiO2. X-ray photoelectron spectra confirm the presence of Co2+ and Co3+ in Co-doped TiO2 samples. Oxygen vacancy defects lead to the formation of bound magnetic polarons which induces a weak ferromagnetic behavior in air-annealed 3% Co-doped TiO2 at room temperature. It is observed that irrespective of the dopant ion, whether magnetic or nonmagnetic, the overlapping of bound magnetic polarons alone can induce ferromagnetism, while the magnetic impurities give rise to an enhanced paramagnetic moment for higher Co concentrations. A detailed understanding on the variation of these magnetic properties by estimating the concentration of bound magnetic polarons is presented, which is in corroboration with the photoluminescence studies. The observed band-gap narrowing in Co-doped TiO2 nanostructures and the mechanism underlying the magnetic interactions associated with the magnetic impurity concentration are advantageous from an applied perspective, especially in the field of spintronic and magneto-optic devices.
机译:由于氧化物半导体存在的缺陷的明确性,TiO 2和掺杂TiO2纳米晶体的磁性是挑战。这里,开发了一种简单的低温溶胶凝胶方法,用于合成低维和高效稳定锐钛矿TiO2纳米晶体。 X射线粉末衍射图案和拉曼光谱确认形成TiO2的单相锐钛矿结构。高分辨率透射电子显微镜研究揭示了溶胶凝胶衍生的纳米晶体的结晶性质。晶格参数的增加以及共掺杂TiO2纳米晶体的微拉曼光谱中最强烈的E-G(1)模式的移位和扩展表明CO在TiO 2中的掺入。在UV可见光谱中的可见区域的吸收边缘的移位表明由于TiO2中的Co掺入而缩小带隙。 X射线光电子体光谱证实了共掺杂TiO 2样品中CO 2 +和CO3 +的存在。氧气空间缺陷导致形成结合的磁极化子,其在室温下在空气退火的3%共掺杂TiO 2中诱导弱铁磁性行为。观察到,无论掺杂剂离子,无论是磁性还是非磁性,单独的结合磁性极化都可以诱导铁磁体,而磁杂质引起更高的CO浓度的增强的顺磁矩。提出了通过估计结合磁性极化浓度的这些磁性变化的详细了解,这是用光致发光研究的粗化。在掺杂的TiO2纳米结构中缩小的观察到的带间隙和与磁杂质浓度相关的磁相互作用的机构从应用的角度来看是有利的,特别是在旋转反应和磁光器件领域中。

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