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NSM Archive - Silicon Carbide (SiC) - Band structure
NSM Archive - Silicon Carbide (SiC) - Band structure

Electronic structure and optical properties of CsI under high pressure: a  first-principles study
Electronic structure and optical properties of CsI under high pressure: a first-principles study

mp-614603: CsI (Cubic, Fm-3m, 225)
mp-614603: CsI (Cubic, Fm-3m, 225)

Understanding of the Band Gap Transition in Cs3Sb2Cl9–xBrx: Anion Site  Preference-Induced Structural Distortion | ACS Applied Energy Materials
Understanding of the Band Gap Transition in Cs3Sb2Cl9–xBrx: Anion Site Preference-Induced Structural Distortion | ACS Applied Energy Materials

The band structure of CsI single crystal under high pressures of 0 (a),...  | Download Scientific Diagram
The band structure of CsI single crystal under high pressures of 0 (a),... | Download Scientific Diagram

Frontiers | Enhanced performance of planar perovskite solar cells by doping  the SnO2 electron transport layer with guanidinium chloride
Frontiers | Enhanced performance of planar perovskite solar cells by doping the SnO2 electron transport layer with guanidinium chloride

Sub-1.4eV bandgap inorganic perovskite solar cells with long-term stability  | Nature Communications
Sub-1.4eV bandgap inorganic perovskite solar cells with long-term stability | Nature Communications

Scintillation yield as function of the bandgap of compounds. The solid... |  Download Scientific Diagram
Scintillation yield as function of the bandgap of compounds. The solid... | Download Scientific Diagram

Enhancing the Electronic Properties and Stability of High-Efficiency  Tin–Lead Mixed Halide Perovskite Solar Cells via Doping Engineering | The  Journal of Physical Chemistry Letters
Enhancing the Electronic Properties and Stability of High-Efficiency Tin–Lead Mixed Halide Perovskite Solar Cells via Doping Engineering | The Journal of Physical Chemistry Letters

Crystals | Free Full-Text | Recent Trends in Elpasolite Single Crystal  Scintillators for Radiation Detection
Crystals | Free Full-Text | Recent Trends in Elpasolite Single Crystal Scintillators for Radiation Detection

The Landé factors of electrons and holes in lead halide perovskites:  universal dependence on the band gap | Nature Communications
The Landé factors of electrons and holes in lead halide perovskites: universal dependence on the band gap | Nature Communications

Temperature Dependence of the Band-Gap Energy and Sub-Band-Gap Absorption  Tails in Strongly Quantized ZnSe Nanocrystals Deposited as Thin Films | The  Journal of Physical Chemistry C
Temperature Dependence of the Band-Gap Energy and Sub-Band-Gap Absorption Tails in Strongly Quantized ZnSe Nanocrystals Deposited as Thin Films | The Journal of Physical Chemistry C

UV–Vis spectrophotometer showing the optical band-gap energy of CsI:Tl... |  Download Scientific Diagram
UV–Vis spectrophotometer showing the optical band-gap energy of CsI:Tl... | Download Scientific Diagram

High-performance wide bandgap perovskite solar cells fabricated in ambient  high-humidity conditions - Materials Advances (RSC Publishing)  DOI:10.1039/D1MA00432H
High-performance wide bandgap perovskite solar cells fabricated in ambient high-humidity conditions - Materials Advances (RSC Publishing) DOI:10.1039/D1MA00432H

Spectrum projection with a bandgap-gradient perovskite cell for colour  perception | Light: Science & Applications
Spectrum projection with a bandgap-gradient perovskite cell for colour perception | Light: Science & Applications

Band structure and DOS for the ground state of the perfect CsI crystal....  | Download Scientific Diagram
Band structure and DOS for the ground state of the perfect CsI crystal.... | Download Scientific Diagram

Figure S10 | Band structure of relaxed CsI-terminated CsPbI3 slab surface.  | Download Scientific Diagram
Figure S10 | Band structure of relaxed CsI-terminated CsPbI3 slab surface. | Download Scientific Diagram

Band structure of Br doped CsI at x = 0.25 in FCC phase obtained by... |  Download Scientific Diagram
Band structure of Br doped CsI at x = 0.25 in FCC phase obtained by... | Download Scientific Diagram

Optical and structural properties of CsI thin film photocathode -  ScienceDirect
Optical and structural properties of CsI thin film photocathode - ScienceDirect

Photonics | Free Full-Text | A Review on X-ray Excited Emission Decay  Dynamics in Inorganic Scintillator Materials
Photonics | Free Full-Text | A Review on X-ray Excited Emission Decay Dynamics in Inorganic Scintillator Materials

mp-614603: CsI (cubic, Fm-3m, 225)
mp-614603: CsI (cubic, Fm-3m, 225)

Band Structure Parameters and Fermi Resonances of Exciton-Polaritons in CsI  and CsBr under Hydrostatic Pressure - UNT Digital Library
Band Structure Parameters and Fermi Resonances of Exciton-Polaritons in CsI and CsBr under Hydrostatic Pressure - UNT Digital Library

Advanced Halide Scintillators: From the Bulk to Nano - Vaněček - 2022 -  Advanced Photonics Research - Wiley Online Library
Advanced Halide Scintillators: From the Bulk to Nano - Vaněček - 2022 - Advanced Photonics Research - Wiley Online Library

The structural, electronic, and optical properties of organic–inorganic  mixed halide perovskites  CH<sub>3</sub>NH<sub>3</sub>Pb(I<sub>1−<em>y</em></sub><em>X<sub>y</sub></em>)<sub>3</sub>  (<em>X</em> = Cl, Br)
The structural, electronic, and optical properties of organic–inorganic mixed halide perovskites CH<sub>3</sub>NH<sub>3</sub>Pb(I<sub>1−<em>y</em></sub><em>X<sub>y</sub></em>)<sub>3</sub> (<em>X</em> = Cl, Br)

Enhancement in optical absorption of CsI(Na) | Nuclear Science and  Techniques
Enhancement in optical absorption of CsI(Na) | Nuclear Science and Techniques

Dipolar cations confer defect tolerance in wide-bandgap metal halide  perovskites | Nature Communications
Dipolar cations confer defect tolerance in wide-bandgap metal halide perovskites | Nature Communications

Band structure of (a) silicene, (b) CSi 7 and (c) GeSi 7 . | Download  Scientific Diagram
Band structure of (a) silicene, (b) CSi 7 and (c) GeSi 7 . | Download Scientific Diagram

PDF] The prospective application of a graphene/MoS2 heterostructure in  Si-HIT solar cells for higher efficiency | Semantic Scholar
PDF] The prospective application of a graphene/MoS2 heterostructure in Si-HIT solar cells for higher efficiency | Semantic Scholar