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Delegace Rozmotat esej thermally evaporated znpc thin films band gap dependence on thickness Vynikající Upéct pomáhat

PDF) THICKNESS AND ANNEALING EFFECTS ON THE STRUCTURAL AND OPTICAL  CONDUCTIVITY PARAMETERS OF ZINC PHTHALOCYANINE THIN FILMS
PDF) THICKNESS AND ANNEALING EFFECTS ON THE STRUCTURAL AND OPTICAL CONDUCTIVITY PARAMETERS OF ZINC PHTHALOCYANINE THIN FILMS

Comparative Studies for Determining the Optical Band-gap Energy of the  Novel Polycrystalline Thin Znga2s4 Films Sprayed at Diffe
Comparative Studies for Determining the Optical Band-gap Energy of the Novel Polycrystalline Thin Znga2s4 Films Sprayed at Diffe

Assessing the Photovoltaic Quality of Vacuum‐Thermal Evaporated Organic  Semiconductor Blends - Kaienburg - 2022 - Advanced Materials - Wiley Online  Library
Assessing the Photovoltaic Quality of Vacuum‐Thermal Evaporated Organic Semiconductor Blends - Kaienburg - 2022 - Advanced Materials - Wiley Online Library

Dispersion dependences n(λ), k(λ) for ZnPc (1), ZnPcF 4 (3) and mixed... |  Download Scientific Diagram
Dispersion dependences n(λ), k(λ) for ZnPc (1), ZnPcF 4 (3) and mixed... | Download Scientific Diagram

Structural and optical properties of thermally evaporated zinc  phthalocyanine thin films - ScienceDirect
Structural and optical properties of thermally evaporated zinc phthalocyanine thin films - ScienceDirect

Morphological, structural, and optical properties of flexible Tin Oxide(II) thin  film via thermal evaporation technique | SpringerLink
Morphological, structural, and optical properties of flexible Tin Oxide(II) thin film via thermal evaporation technique | SpringerLink

Structural and Electric-Optical Properties of Zinc Phthalocyanine  Evaporated Thin Films: Temperature and Thickness Effects | The Journal of  Physical Chemistry C
Structural and Electric-Optical Properties of Zinc Phthalocyanine Evaporated Thin Films: Temperature and Thickness Effects | The Journal of Physical Chemistry C

Polymers | Free Full-Text | Fabrication of Hybrid Membranes Containing  Nylon-11 and Organic Semiconductor Particles with Potential Applications in  Molecular Electronics
Polymers | Free Full-Text | Fabrication of Hybrid Membranes Containing Nylon-11 and Organic Semiconductor Particles with Potential Applications in Molecular Electronics

Absorption coefficient, α, as a function of photon energy for BI-diisoQ...  | Download Scientific Diagram
Absorption coefficient, α, as a function of photon energy for BI-diisoQ... | Download Scientific Diagram

Materials | Free Full-Text | CuPc: Effects of its Doping and a Study of Its  Organic-Semiconducting Properties for Application in Flexible Devices
Materials | Free Full-Text | CuPc: Effects of its Doping and a Study of Its Organic-Semiconducting Properties for Application in Flexible Devices

Optical Dynamics at the Au/ZnPc Interfaces
Optical Dynamics at the Au/ZnPc Interfaces

Grain size distribution graph of ZnPc thin film annealed at a)... |  Download Scientific Diagram
Grain size distribution graph of ZnPc thin film annealed at a)... | Download Scientific Diagram

AFM images for four ZnPc thin films (thickness ∼ 50 nm) grown on... |  Download Scientific Diagram
AFM images for four ZnPc thin films (thickness ∼ 50 nm) grown on... | Download Scientific Diagram

Optical Dynamics at the Au/ZnPc Interfaces
Optical Dynamics at the Au/ZnPc Interfaces

Thickness dependence of the power law exponent as extracted from... |  Download Scientific Diagram
Thickness dependence of the power law exponent as extracted from... | Download Scientific Diagram

Effect of Film Thickness on Optical Properties of Tin Selenide Thin Films  Prepared by Thermal Evaporation for Photovoltaic Applications
Effect of Film Thickness on Optical Properties of Tin Selenide Thin Films Prepared by Thermal Evaporation for Photovoltaic Applications

Phase Transition of Graphene-Templated Vertical Zinc Phthalocyanine  Nanopillars | Journal of the American Chemical Society
Phase Transition of Graphene-Templated Vertical Zinc Phthalocyanine Nanopillars | Journal of the American Chemical Society

Molecules | Free Full-Text | Preparation and Characterization of Thin-Film  Solar Cells with Ag/C60/MAPbI3/CZTSe/Mo/FTO Multilayered Structures
Molecules | Free Full-Text | Preparation and Characterization of Thin-Film Solar Cells with Ag/C60/MAPbI3/CZTSe/Mo/FTO Multilayered Structures

Optical band gap values as-deposited and annealed samples of ZnPc/PbSe... |  Download Scientific Diagram
Optical band gap values as-deposited and annealed samples of ZnPc/PbSe... | Download Scientific Diagram

XRD pattern of ZnPc thin films deposited on glass substrates. The... |  Download Scientific Diagram
XRD pattern of ZnPc thin films deposited on glass substrates. The... | Download Scientific Diagram

PDF) THICKNESS AND ANNEALING EFFECTS ON THE STRUCTURAL AND OPTICAL  CONDUCTIVITY PARAMETERS OF ZINC PHTHALOCYANINE THIN FILMS
PDF) THICKNESS AND ANNEALING EFFECTS ON THE STRUCTURAL AND OPTICAL CONDUCTIVITY PARAMETERS OF ZINC PHTHALOCYANINE THIN FILMS

The growth of zinc phthalocyanine thin films by pulsed laser deposition |  Journal of Materials Research | Cambridge Core
The growth of zinc phthalocyanine thin films by pulsed laser deposition | Journal of Materials Research | Cambridge Core

Low temperature assisted phase transitions in thermally evaporated  Cu2Se/Ga3Se2/In3Se2 multilayer thin film structure: Raman signatures of a  pristine chalcopyrite CuInxGa1-xSe2 structure - ScienceDirect
Low temperature assisted phase transitions in thermally evaporated Cu2Se/Ga3Se2/In3Se2 multilayer thin film structure: Raman signatures of a pristine chalcopyrite CuInxGa1-xSe2 structure - ScienceDirect

Thermally Strain-Induced Band Gap Opening on Platinum Diselenide-Layered  Films: A Promising Two-Dimensional Material with Excellent Thermoelectric  Performance | Chemistry of Materials
Thermally Strain-Induced Band Gap Opening on Platinum Diselenide-Layered Films: A Promising Two-Dimensional Material with Excellent Thermoelectric Performance | Chemistry of Materials

Band structure engineering in organic semiconductors | Science
Band structure engineering in organic semiconductors | Science