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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

Comparative study on performance and physical properties of CsI, NaI, RbI,  and KBr materials
Comparative study on performance and physical properties of CsI, NaI, RbI, and KBr materials

Cesium iodide | CsI - PubChem
Cesium iodide | CsI - PubChem

a) Electric field induced energy gap modulation of H-(CSi) 2 , with... |  Download Scientific Diagram
a) Electric field induced energy gap modulation of H-(CSi) 2 , with... | Download Scientific Diagram

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

Response: Evidence for Band Overlap Metallization of Hydrogen | Science
Response: Evidence for Band Overlap Metallization of Hydrogen | Science

Understanding size dependence of phase stability and band gap in CsPbI3  perovskite nanocrystals: The Journal of Chemical Physics: Vol 152, No 3
Understanding size dependence of phase stability and band gap in CsPbI3 perovskite nanocrystals: The Journal of Chemical Physics: Vol 152, No 3

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

Coatings | Free Full-Text | Luminescence of CsI and CsI:Na Films under LED  and X-ray Excitation
Coatings | Free Full-Text | Luminescence of CsI and CsI:Na Films under LED and X-ray Excitation

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

Coatings | Free Full-Text | Luminescence of CsI and CsI:Na Films under LED  and X-ray Excitation
Coatings | Free Full-Text | Luminescence of CsI and CsI:Na Films under LED and X-ray Excitation

Electronic Structure and Optical Properties of CsI, CsI(Ag), and CsI(Tl)
Electronic Structure and Optical Properties of CsI, CsI(Ag), and CsI(Tl)

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

Chapter 4 Scintillation Detectors
Chapter 4 Scintillation Detectors

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

Comparative study on performance and physical properties of CsI, NaI, RbI,  and KBr materials
Comparative study on performance and physical properties of CsI, NaI, RbI, and KBr materials

5G | ShareTechnote
5G | ShareTechnote

The band structure of NaI, RbI, KBr (B1), and CsI (B2). [Colour online.] |  Download Scientific Diagram
The band structure of NaI, RbI, KBr (B1), and CsI (B2). [Colour online.] | Download Scientific Diagram

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

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

5G | ShareTechnote
5G | ShareTechnote

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

Ba-induced phase segregation and band gap reduction in mixed-halide  inorganic perovskite solar cells | Nature Communications
Ba-induced phase segregation and band gap reduction in mixed-halide inorganic perovskite solar cells | Nature Communications

Optimizing Band Gap of Inorganic Halide Perovskites by Donor–Acceptor Pair  Codoping | Inorganic Chemistry
Optimizing Band Gap of Inorganic Halide Perovskites by Donor–Acceptor Pair Codoping | Inorganic Chemistry

Improved Thermoelectric–Photovoltaic Performance of Ag2Se Originating from  a Halogenation-Induced Wider Band Gap and Low Crystal Symmetry | ACS  Applied Energy Materials
Improved Thermoelectric–Photovoltaic Performance of Ag2Se Originating from a Halogenation-Induced Wider Band Gap and Low Crystal Symmetry | ACS Applied Energy Materials