Article (Scientific journals)
Low temperature crystallization of yttrium orthoferrite by organic acid-assisted sol-gel synthesis
Stevens, Frédéric; Cloots, Rudi; Poelman, D. et al.
2014In Materials Letters, 114, p. 136-139
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Keywords :
Crystallization temperature; Organic acid additive; Sol-gel; YFeO3
Abstract :
[en] Yttrium orthoferrite (YFeO3) is a promising material for visible light photocatalytic applications due to its band gap of 2.2-2.6 eV. However, during the synthesis of YFeO3, unwanted composition can be obtained and the crystallization requires temperatures as high as 850 C. Powders of YFeO3 were prepared using a sol-gel method with and without organic acids (citric acid, tartaric acid, malonic acid and oxalic acid) used as organic modifiers. The band gap of these powders was measured by diffuse reflection spectroscopy, and the crystallinity and crystalline phase content were characterized by X-ray diffraction. Organic acids allow a higher purity and facilitate crystallization. This work aims to produce YFeO3 powders at the lowest possible temperature. Citric acid was found to be the best additive: it reduces the crystallization temperature below 450 C. This opens new perspectives such as the deposition of crystalline YFeO3 thin films onto conductive glass for water-splitting applications. © 2013 Elsevier B.V.
Disciplines :
Chemistry
Author, co-author :
Stevens, Frédéric ;  Université de Liège - ULiège > Département de chimie (sciences) > LCIS - GreenMAT
Cloots, Rudi ;  Université de Liège - ULiège > Département de chimie (sciences) > LCIS - GreenMAT
Poelman, D.;  Lumilab, Department of Solid State Sciences, UGent, Krijgslaan 281, S1, B-9000 Ghent, Belgium
Vertruyen, Bénédicte  ;  Université de Liège - ULiège > Département de chimie (sciences) > Chimie inorganique structurale
Henrist, Catherine ;  Université de Liège - ULiège > Département de chimie (sciences) > LCIS - GreenMAT
Language :
English
Title :
Low temperature crystallization of yttrium orthoferrite by organic acid-assisted sol-gel synthesis
Publication date :
2014
Journal title :
Materials Letters
ISSN :
0167-577X
eISSN :
1873-4979
Publisher :
Elsevier Science, Amsterdam, Netherlands
Volume :
114
Pages :
136-139
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 22 November 2013

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