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Article type: Research Article
Authors: Zhang, Wei-Na1; a; b | Wang, Nai-Pingc | Li, Yun-Huic | Li, Ji-Taob | Tian, Huab; * | Ye, Bao-Xiana; *
Affiliations: [a] College of Chemistry and Molecular Engineering, Zhengzhou University, Henan Zhengzhou, China | [b] Commen Subjects Department, Shangqiu Medical College, Henan Shangqiu, China | [c] College of Chemistry and Environmental Engineering, Changchun University of Science and Technology, Jilin Changchun, China
Correspondence: [*] Corresponding authors: Hua Tian, No. 666, Yingbin Road, Shangqiu, Henan Province, P. R. China, Tel./Fax: +86 370 3251880, E-mail: sqyzth@126.com; Bao-xian Ye, No. 100, Science Road, Zhengzhou, Henan Province, P. R. China, Tel/Fax: +86 371 67763866, E-mail: yebx@zzu.edu.cn.
Note: [1] Wei-Na Zhang, No. 666, Yingbin Road, Shangqiu, Henan Province, P. R. China, Tel./Fax: +86 370 3778193, E-mail: 46178717@qq.com.
Abstract: The controllable stannic oxide nanoflowers had been synthesized by hydro-thermal method through changing synthesized reagent and temperature, in this paper. Then the structure and micromorphology were characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Finally, the photocatalytic degradation ability of prepared products was studied by ultraviolet absorption method. The results showed that the prepared products were pure stannic oxide crystals with rutile structure, micromorphology of flower, good dispersibility, uniform size and strong photocatalytic degradation ability.
Keywords: Stannic oxide, controlled synthesis, nanoflowers, hydro-thermal method, photocatalysis
DOI: 10.3233/MGC-180763
Journal: Main Group Chemistry, vol. 18, no. 4, pp. 383-388, 2019
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