Synthesis, crystal growth and characterization of the pyrochlore Er2Ti2O7
Pyrochlore erbium titanate samples in the form of powders (with nominal compositions of Er 2 Ti 2+ x O 7 , −0.08 ≤ x ≤ 0.08) and bulk single crystals were prepared to elucidate the effect of synthesis and growth conditions on their composition, structure, and transition temperature. All the samples...
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Veröffentlicht in: | CrystEngComm 2019-01, Vol.21 (4), p.73-79 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Pyrochlore erbium titanate samples in the form of powders (with nominal compositions of Er
2
Ti
2+
x
O
7
, −0.08 ≤
x
≤ 0.08) and bulk single crystals were prepared to elucidate the effect of synthesis and growth conditions on their composition, structure, and transition temperature. All the samples were characterized using X-ray diffraction and specific heat measurements. Larger lattice parameters were measured for Ti-deficient stuffed powders, Er
2
(Ti
2−
x
Er
x
)O
7−
δ
, while Ti-rich anti-stuffed powders, (Er
2−
x
Ti
x
)Ti
2
O
7+
δ
, showed a decrease in the lattice parameter. The lattice parameter for the stoichiometrically synthesized powder, Er
2
Ti
2
O
7
, was measured to be
a
= 10.07522(9) Å. Single crystals grown by the conventional floating zone (FZ) technique were Ti deficient (stuffed) and darker in color due to oxygen vacancies. Using the traveling solvent floating zone (TSFZ) method, a high structural quality, transparent and stoichiometric Er
2
Ti
2
O
7
single crystal was grown at a lower temperature using the TiO
2
solvent. The heat capacity measurements of the TSFZ grown Er
2
Ti
2
O
7
crystal and stoichiometric powder exhibited a very close magnetic transition temperature
T
c
of ∼1.23 K that was suppressed in off-stoichiometric samples, demonstrating correlations between the stoichiometry and ground state magnetism in Er
2
Ti
2
O
7
.
A stoichiometric and high crystalline quality Er
2
Ti
2
O
7
single crystal was successfully grown using the traveling solvent floating zone technique for the first time. |
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ISSN: | 1466-8033 |
DOI: | 10.1039/c8ce01885e |