lipsă Înapoi Intolerabil photoelectronic properties of semiconductors determination of energy gap Cheltuire Ulise Imuniza
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Extracting band edge profiles at semiconductor heterostructures from hard-x-ray core-level photoelectron spectra | Scientific Reports
MS Wide band gap chalcogenide semiconductors 011620
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Photoelectron spectroscopy on single crystals of organic semiconductors: experimental electronic band structure for optoelectronic properties - Journal of Materials Chemistry C (RSC Publishing) DOI:10.1039/D0TC00891E
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On the energy gap determination of organic optoelectronic materials: the case of porphyrin derivatives
Ga2Se3 Defect Semiconductors: The Study of Direct Band Edge and Optical Properties | ACS Omega
Determining the nature of the gap in semiconducting graphene | Scientific Reports
Band gap maps beyond the delocalization limit: correlation between optical band gaps and plasmon energies at the nanoscale | Scientific Reports
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Band degeneracy enhanced thermoelectric performance in layered oxyselenides by first-principles calculations | npj Computational Materials
New two-dimensional semiconductor has ideal band gap for solar harvesting
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Wurtzite CuGaO2: A New Direct and Narrow Band Gap Oxide Semiconductor Applicable as a Solar Cell Absorber | Journal of the American Chemical Society
MS Wide band gap chalcogenide semiconductors 011620
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Bandgap control in two-dimensional semiconductors via coherent doping of plasmonic hot electrons | Nature Communications
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10.5: Semiconductors- Band Gaps, Colors, Conductivity and Doping - Chemistry LibreTexts
Relative position between energy gap and band offset of III-V... | Download Scientific Diagram
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