Effect of iron source on nonhydrolytic sol-gel synthesis of Fe2TiO5

Fe2TiO5 was synthesized via nonhydrolytic sol-gel method at 600°C. The effects of iron sources on the synthesis of Fe2TiO5 were investigated. It was demonstrated that Fe-O-Ti bonds will not be formed in the xerogels prepared by taking FeCl3 as iron source because it is strong Lewis acid and induces...

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Main Authors: Jiang Feng, Feng Guo, Yin Li, Zhao Qianqian, Yu Yun, Jiang Weihui
Format: Article
Language:English
Published: University of Novi Sad 2022-03-01
Series:Processing and Application of Ceramics
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1820-6131/2022/1820-61312201007J.pdf
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author Jiang Feng
Feng Guo
Yin Li
Zhao Qianqian
Yu Yun
Jiang Weihui
author_facet Jiang Feng
Feng Guo
Yin Li
Zhao Qianqian
Yu Yun
Jiang Weihui
author_sort Jiang Feng
collection DOAJ
description Fe2TiO5 was synthesized via nonhydrolytic sol-gel method at 600°C. The effects of iron sources on the synthesis of Fe2TiO5 were investigated. It was demonstrated that Fe-O-Ti bonds will not be formed in the xerogels prepared by taking FeCl3 as iron source because it is strong Lewis acid and induces homocondensation. Fe-O-Ti bonds were formed in the xerogels prepared by using Fe(OC2H5)3 and FeOH(CH3COO)2 as iron sources. However, the hydroxyl group in FeOH(CH3COO)2 easily leads to homocondensation and particles agglomeration. Thus, Fe(OC2H5)3 is optimal iron source with both excellent synthesis and particle dispersion effects.
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spelling doaj.art-d567af662bfe4e19a3e00887367dca7c2022-12-21T21:59:25ZengUniversity of Novi SadProcessing and Application of Ceramics1820-61312406-10342022-03-0116171210.2298/PAC2201007JEffect of iron source on nonhydrolytic sol-gel synthesis of Fe2TiO5Jiang Feng0Feng Guo1Yin Li2Zhao Qianqian3Yu Yun4Jiang Weihui5Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, ChinaNational Engineering Research Center for Domestic & Building Ceramics, Jingdezhen Ceramic Institute, Jingdezhen, ChinaDepartment of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, ChinaDepartment of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, ChinaKey Laboratory of Inorganic Coating Materials CAS, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, PR ChinaDepartment of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China + National Engineering Research Center for Domestic & Building Ceramics, Jingdezhen Ceramic Institute, Jingdezhen, ChinaFe2TiO5 was synthesized via nonhydrolytic sol-gel method at 600°C. The effects of iron sources on the synthesis of Fe2TiO5 were investigated. It was demonstrated that Fe-O-Ti bonds will not be formed in the xerogels prepared by taking FeCl3 as iron source because it is strong Lewis acid and induces homocondensation. Fe-O-Ti bonds were formed in the xerogels prepared by using Fe(OC2H5)3 and FeOH(CH3COO)2 as iron sources. However, the hydroxyl group in FeOH(CH3COO)2 easily leads to homocondensation and particles agglomeration. Thus, Fe(OC2H5)3 is optimal iron source with both excellent synthesis and particle dispersion effects.http://www.doiserbia.nb.rs/img/doi/1820-6131/2022/1820-61312201007J.pdffe2tio5nonhydrolytic sol-gel methodiron sourcesynthesis
spellingShingle Jiang Feng
Feng Guo
Yin Li
Zhao Qianqian
Yu Yun
Jiang Weihui
Effect of iron source on nonhydrolytic sol-gel synthesis of Fe2TiO5
Processing and Application of Ceramics
fe2tio5
nonhydrolytic sol-gel method
iron source
synthesis
title Effect of iron source on nonhydrolytic sol-gel synthesis of Fe2TiO5
title_full Effect of iron source on nonhydrolytic sol-gel synthesis of Fe2TiO5
title_fullStr Effect of iron source on nonhydrolytic sol-gel synthesis of Fe2TiO5
title_full_unstemmed Effect of iron source on nonhydrolytic sol-gel synthesis of Fe2TiO5
title_short Effect of iron source on nonhydrolytic sol-gel synthesis of Fe2TiO5
title_sort effect of iron source on nonhydrolytic sol gel synthesis of fe2tio5
topic fe2tio5
nonhydrolytic sol-gel method
iron source
synthesis
url http://www.doiserbia.nb.rs/img/doi/1820-6131/2022/1820-61312201007J.pdf
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