Author:
Dippel Ann-Christin,Jensen Kirsten M. Ø.,Tyrsted Christoffer,Bremholm Martin,Bøjesen Espen D.,Saha Dipankar,Birgisson Steinar,Christensen Mogens,Billinge Simon J. L.,Iversen Bo B.
Abstract
Varying atomic short-range order is correlated with the ratio of the monoclinic (m) to tetragonal (t) phase in ZrO2nanoparticle formation by solvothermal methods. Reactions from Zr oxynitrate in supercritical methanol and Zr acetate in water (hydrothermal route) were studiedin situby X-ray total scattering. Irrespective of the Zr source and solvent, the structure of the precursor in solution consists of edge-shared tetramer chains. Upon heating, the nearest-neighbor Zr—O and Zr—Zr distances shorten initially while the medium-range connectivity is broken. Depending on the reaction conditions, the disordered intermediate transforms either rapidly intom-ZrO2, or more gradually into mixedm- andt-ZrO2with a concurrent increase of the shortest Zr—Zr distance. In the hydrothermal case, the structural similarity of the amorphous intermediate andm-ZrO2favors the formation of almost phase-purem-ZrO2nanoparticles with a size of 5 nm, considerably smaller than the often-cited critical size below which the tetragonal is assumed to be favoured. Pair distribution function analysis thus unravels ZrO2phase formation on the atomic scale and in this way provides a major step towards understanding polymorphism of ZrO2beyond empirical approaches.
Publisher
International Union of Crystallography (IUCr)
Subject
Inorganic Chemistry,Physical and Theoretical Chemistry,Condensed Matter Physics,General Materials Science,Biochemistry,Structural Biology
Cited by
45 articles.
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