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Optimizing Band Gap of Inorganic Halide Perovskites by Donor–Acceptor Pair Codoping | Inorganic Chemistry
Ab initio study of CsI and its surface
Comparative study on performance and physical properties of CsI, NaI, RbI, and KBr materials
Coatings | Free Full-Text | Luminescence of CsI and CsI:Na Films under LED and X-ray Excitation
Band Structure Parameters and Fermi Resonances of Exciton-Polaritons in CsI and CsBr under Hydrostatic Pressure - UNT Digital Library
a) Electric field induced energy gap modulation of H-(CSi) 2 , with... | Download Scientific Diagram
Comparative study on performance and physical properties of CsI, NaI, RbI, and KBr materials
Band Structure Parameters and Fermi Resonances of Exciton-Polaritons in CsI and CsBr under Hydrostatic Pressure - UNT Digital Library
mp-614603: CsI (Cubic, Fm-3m, 225)
Linear Relationship between the Dielectric Constant and Band Gap in Low-Dimensional Mixed-Halide Perovskites | The Journal of Physical Chemistry C
Figure 2-2 from Portal Imaging Using a CSI (TL) Scintillator Coupled to a Cooled CCD Camera | Semantic Scholar
Spectrum projection with a bandgap-gradient perovskite cell for colour perception | Light: Science & Applications
Electronic Structure and Optical Properties of CsI, CsI(Ag), and CsI(Tl)
Chapter 4 Scintillation Detectors
mp-614603: CsI (Cubic, Fm-3m, 225)
UV–Vis spectrophotometer showing the optical band-gap energy of CsI:Tl... | Download Scientific Diagram
Understanding size dependence of phase stability and band gap in CsPbI3 perovskite nanocrystals: The Journal of Chemical Physics: Vol 152, No 3
The band structure of NaI, RbI, KBr (B1), and CsI (B2). [Colour online.] | Download Scientific Diagram
Improved Thermoelectric–Photovoltaic Performance of Ag2Se Originating from a Halogenation-Induced Wider Band Gap and Low Crystal Symmetry | ACS Applied Energy Materials
Highly efficient wide-band-gap perovskite solar cells fabricated by sequential deposition method - ScienceDirect
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Tailoring the Electrical Properties of Inverse Silicon Opals ‐ A Step Towards Optically Amplified Silicon Solar Cells - Suezaki - 2009 - Advanced Materials - Wiley Online Library