Effect of Transition Metal (Fe, Co) Ion Doping on TiO2 Nano Particles.

锐钛矿 金红石 材料科学 布鲁克特 光催化 相(物质) 结晶 分析化学(期刊) 价(化学) 兴奋剂 化学工程 纳米技术 化学 催化作用 色谱法 光电子学 有机化学 工程类 生物化学
作者
kirit Kumar Siddhapara
出处
期刊:Meeting abstracts 卷期号:MA2022-02 (38): 2424-2424
标识
DOI:10.1149/ma2022-02382424mtgabs
摘要

Keywords: Growth from solution, Nanomaterials, Oxides, Photocatalytic, Sol-Gel method, DMS. Abstract. we report the growth of [Fe, Co] x TiO 2 (x=0.01, 0.02 & 0.04) Nano quantum dots prepared by Sol-Gel technique, followed by freeze-drying treatment at -30°C temperature for 12hrs. The obtained Gel was thermally treated at different temperature like 200,400,600, 800°C. The crystalline size of 4 to 40 nm is achieved. X-ray diffraction pattern of samples show anatase phases of TiO 2 , up to 600 ° C. At 800 ° C, the phase is Rutile. Figure 1 shows the XRD patterns acquired from different samples heated at different temperatures. The diffraction peak at 25.22°, 25.49°and 25.6° observed from the XRD pattern of the Fe, Co doped TiO 2 shows that the main crystal phase is anatase, and the peak at 27.47° indicates the presence of the rutile phase. All the peaks in the XRD patterns of the sample calcined at 200°C, 400°C and 600°C of TM doped TiO 2 can be designated to the anatase phase (most active phase) without any indication of other crystalline phases such as rutile or brookite . As a variant valence metal cation, Fe, Co ions can react with Ti 4+ on the surface of TiO 2 , and Ti 4+ is reduced to Ti 3+ which inhibits the transformation of anatase to rutile [1]. It leads to the reduction in the oxygen vacancies on the TiO 2 surface and suppresses the crystallization of other phases by adsorbing onto the surface of the TiO 2 particles [2]. The photocatalytic degradation of formaldehyde has been successfully demonstrated using a 250 V UV lamp with TM doped TiO 2 nano powder in a specific experimental setup. The degradation rate increases linearly with dopant content increases. This indicates that the photocatalytic reaction in this experiment was effected by dopant concentration. The results obtained in this research contribute to the understanding of binary doped transition metal ions in TiO 2 nanoparticles can lead the efforts of enhancing their environmental application. Study of Magnatic proprty has been carried out by using VSM. The magnetic susceptibility of the Fe, Co doped TiO 2 nanopowder increases with increase in doping concentration. Fe, Co doped TiO 2 exhibits ferromagnetism at room temperature. Figure 1

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