Porous silicon: a buffer layer for PbS heteroepitaxyYakovtseva, V.,
Vorozov, N.,
Dolgyi, L.,
Levchenko, V.,
Postnova, L.,
Balucani, M.,
Bondarenko, V.,
Lamedica, G.,
Ferrari, A. . The films were comparable with films grown on BaF2 substrates. Beneficial influence of
a PS buffer layer
Nanoporous Anodic Alumina Membrane as Passive Light AmplifierYakovtseva, V. A.,
Shulgov, V. V.,
Shimanovich, D. L.,
Яковцева, В. А.,
Шульгов, В. В.,
Шиманович, Д. Л. that the nanoporous structure of anodic alumina films can be purposefully used in LCD to control
a light propagation.
Bond energy in nanostructured waterVolchek, S. A.,
Волчёк, С. А.,
Petrovich, V. A.,
Петрович, В. А.,
Granko, S. V,
Гранько, С. В.,
Serenkov, V. Yu.,
Серенков, В. Ю.,
Yakovtseva, V. A.,
Яковцева, В. А. Monitoring of loss tangent is shown to be
a sensitive method allowing control of energy bonds
Electrolyte Hydrodynamics in Anodic Alumina Pores action during the oxide formation is discussed.
A qualitative model for the electrolyte exchange
General growth pattern of anodic aluminum oxides/electrolyte interface
(Vd). In all cases
V0>> Vd. When Vd→0,
a preferential growth of dense alumina takes place
Electrochemical alumina technology for high-brightness LED applications.e.
a dielectric substrate, to be
excluded. As
a result, the record low heat resistance is reached
Processes at Platinum Electrodes during the Cathode Polarization in Alcohol Erbium Nitrate Solution(OH)x(NO3)y(С2Н5О)z·nH2O, x + y + z = 3, formed during the cathode treatment was shown to be not
a product
Formation features of deposits during a cathode treatment of porous silicon in aqueous solutions of erbium saltsPetrovich, V. A.,
Volchek, S. A.,
Dolgyi, L.,
Yakovtseva, V. A.,
Bondarenko, V. P.,
Balucani, M.,
Lamedica, G.,
Ferrari, A.,
Benson, T. M.,
Arrand, H. The chemical processes that occur during the electrochemical treatment of
a porous silicon cathode