1,216 research outputs found
On the effect of oxygen partial pressure on the chromium distribution coefficient in melt-grown ruby crystals
Small ruby crystals were grown by the Czochralski technique in different
atmospheres and their actual chromium content was analysed by a wet chemical
method. The chromium distribution coefficient k was found to be strongly
dependent on oxygen partial pressure p(O2). It ranges from k=0.3 in a reducing
atmosphere to k=1.2 in a slightly oxidizing atmosphere and to a good
approximation k depends linearly on log(p(O2)). The experimental data are
discussed on the basis of thermodynamic equilibrium calculations
On the Crystallization of Terbium Aluminium Garnet
Attempts to grow terbium aluminium garnet (Tb3Al5O12, TAG) by the Czochralski
method lead to crystals of millimeter scale. Larger crystals could not be
obtained. DTA measurements within the binary system showed that TAG melts
incongruently at 1840 deg. C. The perovskite (TbAlO3, TAP) with a congruent
melting point of 1930 deg. C is the most stable phase in this system. The
region for primary crystallization of TAP covers the chemical composition of
TAG and suppresses the primary crystallization of the terbium aluminium garnet.Comment: 6 pages, 2 figure
Growth Techniques for Bulk ZnO and Related Compounds
ZnO bulk crystals can be grown by several methods. 1) From the gas phase,
usually by chemical vapor transport. Such CVT crystals may have high chemical
purity, as the growth is performed without contact to foreign material. The
crystallographic quality is often very high (free growth). 2) From melt fluxes
such as alkaline hydroxides or other oxides (MoO3, V2O5, P2O5, PbO) and salts
(PbCl2, PbF2). Melt fluxes offer the possibility to grow bulk ZnO under mild
conditions (<1000 deg. C, atmospheric pressure), but the crystals always
contain traces of solvent. The limited purity is a severe drawback, especially
for electronic applications. 3) From hydrothermal fluxes, usually alkaline
(KOH, LiOH) aqueous solutions beyond the critical point. Due to the amphoteric
character of ZnO, the supercritical bases can dissolve it up to several per
cent of mass. The technical requirements for this growth technology are
generally hard, but this did not hinder its development as the basic technique
for the growth of {\alpha}-quartz, and meanwhile also of zinc oxide, during the
last decades. 4) From pure melts, which is the preferred technology for
numerous substances applied whenever possible, e.g. for the growth of silicon,
gallium arsenide, sapphire, YAG. The benefits of melt growth are (i) the high
growth rate and (ii) the absence of solvent related impurities. In the case of
ZnO, however, it is difficult to find container materials that are compatible
from the thermal (fusion point Tf = 1975 deg. C) and chemical (required oxygen
partial pressure) point of view. Either cold crucible (skull melting) or
Bridgman (with reactive atmosphere) techniques were shown to overcome the
problems that are inherent to melt growth. Reactive atmospheres allow to grow
not only bulk ZnO single crystals, but also other TCOs such as {\beta}-Ga2O3
and In2O3.Comment: 10 pages, 7 figures, talk on MRS Fall 2011 Bosto
Growth of Oxide Compounds under Dynamic Atmosphere Composition
Commercially available gases contain residual impurities leading to a
background oxygen partial pressure of typically several 10^{-6} bar,
independent of temperature. This oxygen partial pressure is inappropriate for
the growth of some single crystals where the desired oxidation state possesses
a narrow stability field. Equilibrium thermodynamic calculations allow the
determination of dynamic atmosphere compositions yielding such self adjusting
and temperature dependent oxygen partial pressures, that crystals like ZnO,
Ga2O3, or Fe{1-x}O can be grown from the melt.Comment: 4 pages, 3 figures, talk on CGCT-4 Sendai, May 21-24, 200
Growth of Self Organized Eutectic Fibers from LiF-Rare Earth Fluoride Systems
Eutectic fibers consisting of an ordered arrangement of LiF fibrils inside a
LiREF4 matrix (RE = Y, Gd) can be grown with the micro-pulling-down method at
sufficiently large pulling rate exceeding 120 mm/h. The distance between
individual fibrils could be scaled down to 1 micrometer at 300 mm/h pulling.
LiF-LiYF4 has stronger tendency to form facetted eutectic colonies than
LiF-LiGdF4, explained by the larger entropy of melting of the former.Comment: 6 pages, 5 figures, Talk on MRS Fall 2012 Bosto
The Bold and the Beautiful: How Aspects of Personality Affect Foreign Language Pronunciation
In the main study, a group of Polish learners of English completed a number of mimicry tasks in three languages: Italian, Dutch and Chinese, as well as a narration task in English. Mimicry performance and English pronunciation were then assessed by native speakers and compared. Participants also completed a questionnaire concerning their feelings about the languages they were to mimic and a second questionnaire designed to detect affective factors such as language learning anxiety, as well as attitudes towards the pronunciation of Polish and English. The pilot study suggested that the perceived attractiveness of the foreign language to be mimicked did not affect the performance of most participants, and that mimicry skill was fairly constant across languages. However, those who were particularly concerned about their personal appearance showed greater fluctuation in their ability to mimic and their performance appeared to be influenced by their attitude towards the language. This is referred to by the author as the Cecily effect. That study also confirmed the results of my previous experimental work showing that mimicry skill is correlated to some degree with English language pronunciation and that both pronunciation and mimicry are negatively affected by high levels of anxiety. The main study sets out to investigate whether or not these conclusions hold true for a larger sample population and also seeks to determine the effect of confidence and willingness to take risks on scores for both foreign language pronunciation and mimicry exercises
The inverse perovskite BaLiF3: single-crystal neutron diffraction and analyses of potential ion pathways
Doped barium lithium trifluoride has attracted attention as component for scintillators, luminescent materials and electrodes. With lithium and fluoride, it contains two possibly mobile species, which may account for its ionic conductivity. In this study, neutron diffraction on oxide-containing BaLiF3 single-crystals is performed at up to 636.2°C. Unfortunately, ion-migration pathways could not be mapped by modelling anharmonic ion displacement or by inspecting the scattering-length density that was reconstructed via maximum-entropy methods. However, analyses of the topology and bond-valence site energies derived from the high-temperature structure reveal that the anions can migrate roughly along the edges of the LiF6 coordination octahedra with an estimated migration barrier of ∼0.64 eV (if a vacancy permits), whereas the lithium ions are confined to their crystallographic positions. This finding is not only valid for the title compound but for ion migration in all perovskites with Goldschmidt tolerance factors near unity
The growth of ZnO crystals from the melt
The peculiar properties of zinc oxide (ZnO) make this material interesting
for very different applications like light emitting diodes, lasers, and
piezoelectric transducers. Most of these applications are based on epitaxial
ZnO layers grown on suitable substrates, preferably bulk ZnO. Unfortunately the
thermochemical properties of ZnO make the growth of single crystals difficult:
the triple point 1975 deg C., 1.06 bar and the high oxygen fugacity at the
melting point p_O2 = 0.35 bar lead to the prevailing opinion that ZnO crystals
for technical applications can only be grown either by a hydrothermal method or
from "cold crucibles" of solid ZnO. Both methods are known to have significant
drawbacks. Our thermodynamic calculations and crystal growth experiments show,
that in contrast to widely accepted assumptions, ZnO can be molten in metallic
crucibles, if an atmosphere with "self adjusting" p_O2 is used. This new result
is believed to offer new perspectives for ZnO crystal growth by established
standard techniques like the Bridgman method.Comment: 6 pages, 6 figures, accepted for J. Crystal Growt
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