Works matching DE "DARK conductivity"
Results: 16
The role of adsorbates in the green emission and conductivity of zinc oxide.
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- Communications Chemistry, 2019, v. 2, n. 1, p. N.PAG, doi. 10.1038/s42004-019-0153-0
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Photoconduction in amorphous thin films of Se<sub>90</sub>Sb<sub>10-x</sub>Ag<sub>x</sub> glassy alloys.
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- Phase Transitions, 2017, v. 90, n. 10, p. 1001, doi. 10.1080/01411594.2017.1302084
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Properties of PbS: Ni<sup>2+</sup> Nanocrystals in Thin Films by Chemical Bath Deposition.
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- ISRN Nanotechnology, 2012, p. 1, doi. 10.5402/2012/546027
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Modification of the thermal relaxation kinetics of the photoinduced (at T = 425 K) metastable dark conductivity of a-Si:H films by weak illumination during the initial stage of relaxation.
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- Semiconductors, 2017, v. 51, n. 4, p. 417, doi. 10.1134/S1063782617040108
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Effect of light on the mobility of free carriers in indium-monoselenide crystals.
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- Semiconductors, 2014, v. 48, n. 8, p. 981, doi. 10.1134/S1063782614080028
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Features of the dark conductivity of zinc selenide.
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- Semiconductors, 2014, v. 48, n. 3, p. 273, doi. 10.1134/S1063782614030087
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On the photoinduced effect in undoped a-Si:H films.
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- Semiconductors, 2013, v. 47, n. 6, p. 767, doi. 10.1134/S1063782613060158
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Composition dependence study of thermally evaporated nanocrystalline ZnTe thin films.
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- Journal of Materials Science: Materials in Electronics, 2019, v. 30, n. 4, p. 3504, doi. 10.1007/s10854-018-00627-9
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Deposition time effects on optical gap, dark conductivity and X-ray photoresponse properties of thermal evaporated a-Se thin films.
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- Journal of Materials Science: Materials in Electronics, 2018, v. 29, n. 22, p. 19256, doi. 10.1007/s10854-018-0052-7
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Structural and optical investigation of CdSeS (x = 4, 8, 12) chalcogenide thin films.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 7, p. 4816, doi. 10.1007/s10854-015-3148-3
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Effects of substrate temperature on structural and electrical properties of cubic silicon carbide films deposited by hot wire chemical vapor deposition technique.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 5, p. 2844, doi. 10.1007/s10854-015-2767-z
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NEUTRON IRRADIATION INFLUENCE ON MOBILITY AND COMPENSATION OF DARK CONDUCTIVITY IN SILICON.
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- Lithuanian Journal of Physics, 2016, v. 56, n. 2, p. 102
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Enhancement of Electron Mobility and Photoconductivity in Quantum Well In<sub>0:52</sub>Al<sub>0:48</sub>As/In<sub>0:53</sub>Ga<sub>0:47</sub>As/In<sub>0:52</sub>A10:48As on InP Substrate.
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- Acta Physica Polonica: A, 2013, v. 123, n. 2, p. 345, doi. 10.12693/APhysPolA.123.345
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Effects of temperature and rare-earth doping on the transport properties of GaSe crystals.
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- Inorganic Materials, 2014, v. 50, n. 4, p. 334, doi. 10.1134/S0020168514040013
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Electric-field effect on the electrical conductivity of InSe and InSe〈Dy〉 crystals.
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- Inorganic Materials, 2013, v. 49, n. 12, p. 1180, doi. 10.1134/S0020168513120017
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Superconductivity in nitrogen-doped 3C-SiC from first-principles calculations.
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- Modern Physics Letters B, 2017, v. 31, n. 12, p. -1, doi. 10.1142/S0217984917501160
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- Article