Results 221 to 230 of about 372,997 (276)
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Nanoscale, 2012
Luminescent quantum dots conjugated with highly selective molecular recognition ligands are widely used for targeting and imaging biological structures. In this paper, water soluble cholinomimetic cadmium selenide (core), zinc selenide/zinc sulfide (shell) quantum dots were synthesized for targeting cholinergic sites.
Claire, Gégout +4 more
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Luminescent quantum dots conjugated with highly selective molecular recognition ligands are widely used for targeting and imaging biological structures. In this paper, water soluble cholinomimetic cadmium selenide (core), zinc selenide/zinc sulfide (shell) quantum dots were synthesized for targeting cholinergic sites.
Claire, Gégout +4 more
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Electroluminescence in zinc sulpho-selenide and in zinc sulphide
Journal of Physics D: Applied Physics, 1977Light-emitting devices with electrode areas of 1 mm2 have been prepared on single crystals of solid solutions of zinc selenide and zinc sulphide. It is shown that it is relatively easy to prepare ohmic contacts with indium on samples containing lp to 80% molar of sulphur.
M E Ozsan, J Woods
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The electrical properties of zinc selenide
Journal of Physics D: Applied Physics, 1976The electrical conductivity and Hall coefficient of a variety of single crystals of zinc selenide have been measured. As-grown, undoped crystals have a resistivity ( approximately 1012 Omega cm) which is too large for successful Hall measurements to be made.
G Jones, J Woods
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Solar Energy Materials and Solar Cells, 1993
Abstract Polycrystalline zinc selenide films supported on titanium-substrate have been prepared by electrochemical codeposition under limiting condition. All preparations exhibit p-type semiconductivity. Photoactivity, capacitance, current-voltage measurements also support the above inference.
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Abstract Polycrystalline zinc selenide films supported on titanium-substrate have been prepared by electrochemical codeposition under limiting condition. All preparations exhibit p-type semiconductivity. Photoactivity, capacitance, current-voltage measurements also support the above inference.
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Infrared Lattice Vibrations of Zinc Selenide and Zinc Telluride
Journal of Applied Physics, 1968The infrared reflection and transmission spectra of zinc selenide and zinc telluride were investigated at room temperature in the region of the transverse and longitudinal optical phonon frequencies. From the transmission measurements at oblique incidence of vacuum-evaporated films of these materials, the fundamental longitudinal optical (LO) vibration
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Zinc Selenide Nanoribbons and Nanowires
The Journal of Physical Chemistry B, 2004Zinc selenide nanoribbons and nanowires were obtained using laser ablation of ZnSe pressed powders.
Yang Jiang +6 more
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Edge emission in zinc selenide
Journal of Luminescence, 1975Abstract Three different series of edge emission bands, associated with donor—acceptor recombination, have been observed at 10 K in crystals of zinc selenide grown in a continuous flow of argon or in sealed capsules in the presence of excess zinc or selenium.
S. Gezci, J. Woods
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Phonon anomalies in zinc selenide
Journal of Physics C: Solid State Physics, 1982Experimental evidence of an anomalous temperature dependence of the double-phonon Raman spectrum is presented and explained in terms of a fourth-order anharmonic coupling between double-phonon states.
D Schmeltzer, R Beserman
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1999
Zinc selenide (ZnSe) crystallizes in the cubic, zinc-blende structure, although it is also possible to grow hexagonal wurtzite form. ZnSe is the prototype of wide-band-gap II–VI semiconductors and plays an important role in the development of blue-green or blue injection lasers (see, e.g., Ref. [1]).
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Zinc selenide (ZnSe) crystallizes in the cubic, zinc-blende structure, although it is also possible to grow hexagonal wurtzite form. ZnSe is the prototype of wide-band-gap II–VI semiconductors and plays an important role in the development of blue-green or blue injection lasers (see, e.g., Ref. [1]).
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Negative Magnetoresistance in Zinc Selenide
physica status solidi (b), 1981AbstractThe effect of negative magnetoresistance (NMR) is found and studied in low‐ohmic n‐ZnSe crystals with electron concentrations from 2.1 × 1016 to 4.9 × 1017 cm−3 which is manifested as a reduction in resistance of the crystals in the magnetic field. The investigations are made in the temperature range 1.65 to 300 K.
G. N. Ivanova +3 more
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