Supercritical temperature synthesis of fluorine-doped VO2(M) nanoparticle with improved thermochromic property

Publons ID1728975
Wos IDWOS:000430327900003
Doi10.1088/1361-6528/aab752
TitleSupercritical temperature synthesis of fluorine-doped VO2(M) nanoparticle with improved thermochromic property
First AuthorRiapanitra, Anung; Asakura, Yusuke; Cao, Wenbin;
Last AuthorYin, Shu
AuthorsRiapanitra, A; Asakura, Y; Cao, WB; Noda, Y; Yin, S;
Publish DateJUN 15 2018
Journal NameNANOTECHNOLOGY
Citation7
AbstractFluorine-doped VO2(M) nanoparticles have been successfully synthesized using the hydrothermal method at a supercritical temperature of 490 degrees C. The pristine VO2(M) has the critical phase transformation temperature of 64 degrees C. The morphology and homogeneity of the monoclinic structure VO2(M) were adopted by the fluorine-doped system. The obtained particle size of the samples is smaller at the higher concentration of anion doping. The best reduction of critical temperature was achieved by fluorine doping of 0.13% up to 48 degrees C. The thin films of the fluorine-doped VO2(M) showed pronounced thermochromic property and therefore are suitable for smart window applications.
Publish TypeJournal
Publish Year2018
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Page End(not set)
Issn0957-4484
Eissn1361-6528
Urlhttps://www.webofscience.com/wos/woscc/full-record/WOS:000430327900003
AuthorANUNG RIAPANITRA, S.Si, M.Sc.
File15356.pdf