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Epitaxial Cu3Sn and Cu6Sn5 grown by liquid-phase electroepitaxy (LPEE) have been demonstrated in this work.
Systematic studies of influence of crucible design on uniformity of growth of bulk III V crystals by contactless liquid phase electroepitaxy (CLPEE) are reported.
CLPEE removes the most important drawback of standard liquid phase electroepitaxy, i.e. limited thickness of crystals being due to superheating of the growing crystals by Joule heat generation.
We have designed and built a new growth chamber which allows us to combine the Molecular Beam Epitaxy process with a Liquid Phase Electroepitaxy system.
We have designed and built a new growth chamber which allowed us to combine a plasma-assisted molecular beam epitaxy process with a liquid phase electroepitaxy.
TiO2 supported metal nanocatalysts were prepared by liquid phase photo deposition method [32].
Results of initial solid phase assays of the library were confirmed by liquid phase assays of hBChE functional activity.
We have designed and built a new growth chamber which allowed us to combine the plasma-assisted molecular beam epitaxy process with a liquid-phase electroepitaxy system.
NZVI particles were prepared by liquid-phase reduction method.
IA-2 autoantibodies were detected by liquid-phase radioimmunoprecipitation using ∼20,000 cpm of radiolabeled IA-2.
SnO2 shell layer was deposited on the ZnO nanorod array by a liquid phase deposition.
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