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T1 - Epitaxy of Inorganic Halide Perovskites: Case of 퐂sSnI3. AU - Solomon Sathiaraj, Junia Shelomi Solomon. A2 - Birkhölzer, Yorick A. A2 - Soltanpoor, Wiria. A2 - Soto Montero, Tatiana Del Socorro. A2 - Morales Masis, Monica. PY - 2022/6/17. Y1 - 2022/6/17. M3 - Poster. T2 - Symposium on Light Management in Photovoltaics, LMPV 2019
CH 3 NH 3 SnI 3 is a metal halide perovskite that shows metallic conductivity over a wide temperature range, although ab initio calculations and optical absorption indicate that its band structure is consistent with that of an intrinsic semiconductor. Hall effect measurements of as-grown crystals give a hole concentration of about 9×10 17 cm −3 with rather high Hall mobility of about 200 cm ...
Phenotype of the 9/28 mutant. (Top) A 9/28 mutant (SSNI2) and a wild-type strain (FGSC26) were grown for 2 days on an agar plate. (Bottom) SEM picture of a 9/28 mutant and a wild-type conidiophore.
B-γ-CsSnI3 perovskite solar cells (PSCs) are simulated employing diverse electron-transporting layers (ETLs, including TiO2, ZnO, SnO2, GaN, C60, and PCBM), and a comparative study has been made.
The values of the device and material parameters that are adopted from theories, experiments and literature are summarized in Tables 1 and 2 27,28,29,39.Initially, the thickness of FTO (500 nm ...
Semantic Scholar extracted view of "From unstable CsSnI3 to air-stable Cs2SnI6: A lead-free perovskite solar cell light absorber with bandgap of 1.48 eV and high absorption coefficient" by Xiaofeng Qiu et al.
CsSnI(3) is an unusual perovskite that undergoes complex displacive and reconstructive phase transitions and exhibits near-infrared emission at room temperature. Experimental and theoretical studies of CsSnI(3) have been limited by the lack of detailed crystal structure characterization and chemical …