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稀土改性二氧化钛纳米颗粒:合成与光化学性质的分子洞察

Rare-Earth-Modified Titania Nanoparticles: Molecular Insight into Synthesis and Photochemical Properties.

作者信息

Svensson Fredric G, Cojocaru Bogdan, Qiu Zhen, Parvulescu Vasile, Edvinsson Tomas, Seisenbaeva Gulaim A, Tiseanu Carmen, Kessler Vadim G

机构信息

Department of Molecular Sciences, Swedish University of Agricultural Sciences, Box 7015, Uppsala SE-75007, Sweden.

Department of Chemistry, University of Bucharest, B-dul Regina Elisabeta, No. 4-12, Bucharest RO-030018, Romania.

出版信息

Inorg Chem. 2021 Oct 4;60(19):14820-14830. doi: 10.1021/acs.inorgchem.1c02134. Epub 2021 Sep 13.

Abstract

A molecular precursor approach to titania (anatase) nanopowders modified with different amounts of rare-earth elements (REEs: Eu, Sm, and Y) was developed using the interaction of REE nitrates with titanium alkoxides by a two-step solvothermal-combustion method. The nature of an emerging intermetallic intermediate was revealed unexpectedly for the applied conditions via a single-crystal study of the isolated bimetallic isopropoxide nitrate complex [TiY(PrO)(NO)], a nonoxo-substituted compound. Powders of the final reaction products were characterized by powder X-ray diffraction, scanning electron microscopy-energy-dispersive spectroscopy, Fourier transform infrared, X-ray photoelectron spectroscopy, Raman spectroscopy, and photoluminescence (PL). The addition of REEs stabilized the anatase phase up to ca. 700 °C before phase transformation into rutile became evident. The photocatalytic activity of titania modified with Eu and Sm was compared with that of Degussa P25 titania as the control. PL studies indicated the incorporation of Eu and Sm cations into titania (anatase) at lower annealing temperatures (500 °C), but an exclusion to the surface occurred when the annealing temperature was increased to 700 °C. The efficiency of the modified titania was inferior to the control titania while illuminated within narrow wavelength intervals (445-465 and 510-530 nm), but when subjected to a wide range of visible radiation, the Eu- and Sm-modified titania outperformed the control, which was attributed both to doping of the band structure of TiO with additional energy levels and to the surface chemistry of the REE-modified titania.

摘要

通过两步溶剂热燃烧法,利用稀土硝酸盐与钛醇盐的相互作用,开发了一种制备用不同量稀土元素(稀土元素:铕、钐和钇)改性的二氧化钛(锐钛矿)纳米粉末的分子前驱体方法。通过对分离出的双金属异丙醇硝酸盐配合物[TiY(PrO)(NO)](一种非氧取代化合物)的单晶研究,意外地揭示了在所应用条件下出现的金属间化合物中间体的性质。最终反应产物的粉末通过粉末X射线衍射、扫描电子显微镜-能量色散光谱、傅里叶变换红外光谱、X射线光电子能谱、拉曼光谱和光致发光(PL)进行表征。添加稀土元素可将锐钛矿相稳定至约700°C,直到向金红石相的相变变得明显。将铕和钐改性的二氧化钛的光催化活性与作为对照的德固赛P25二氧化钛进行了比较。PL研究表明,在较低退火温度(500°C)下,铕和钐阳离子掺入二氧化钛(锐钛矿)中,但当退火温度升至700°C时,它们会被排除在表面。在窄波长区间(445 - 465和510 - 530 nm)光照下,改性二氧化钛的效率低于对照二氧化钛,但在受到广泛的可见光辐射时,铕和钐改性的二氧化钛表现优于对照,这既归因于用额外能级对TiO的能带结构进行掺杂,也归因于稀土改性二氧化钛的表面化学性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5476/8493554/eeaede4550db/ic1c02134_0001.jpg

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