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Effect of heterovalent doping on photostimulated defect formation in CsPbBr3

Ibrahim M Sharaf 1, 2
Ibrahim M Sharaf
Anna Vladimirovna Shurukhina 1
Anna Vladimirovna Shurukhina
Irina Sergeevna Komarova 1
Irina Sergeevna Komarova
Alexei Vladimirovich Emeline 1
Alexei Vladimirovich Emeline
Published 2021-07-07
CommunicationVolume 31, Issue 4, 465-468
3
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Sharaf I. M. et al. Effect of heterovalent doping on photostimulated defect formation in CsPbBr3 // Mendeleev Communications. 2021. Vol. 31. No. 4. pp. 465-468.
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Sharaf I. M., Shurukhina A. V., Komarova I. S., Emeline A. V. Effect of heterovalent doping on photostimulated defect formation in CsPbBr3 // Mendeleev Communications. 2021. Vol. 31. No. 4. pp. 465-468.
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TY - JOUR
DO - 10.1016/j.mencom.2021.07.009
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2021.07.009
TI - Effect of heterovalent doping on photostimulated defect formation in CsPbBr3
T2 - Mendeleev Communications
AU - Sharaf, Ibrahim M
AU - Shurukhina, Anna Vladimirovna
AU - Komarova, Irina Sergeevna
AU - Emeline, Alexei Vladimirovich
PY - 2021
DA - 2021/07/07
PB - Mendeleev Communications
SP - 465-468
IS - 4
VL - 31
ER -
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@article{2021_Sharaf,
author = {Ibrahim M Sharaf and Anna Vladimirovna Shurukhina and Irina Sergeevna Komarova and Alexei Vladimirovich Emeline},
title = {Effect of heterovalent doping on photostimulated defect formation in CsPbBr3},
journal = {Mendeleev Communications},
year = {2021},
volume = {31},
publisher = {Mendeleev Communications},
month = {Jul},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2021.07.009},
number = {4},
pages = {465--468},
doi = {10.1016/j.mencom.2021.07.009}
}
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Sharaf, Ibrahim M., et al. “Effect of heterovalent doping on photostimulated defect formation in CsPbBr3.” Mendeleev Communications, vol. 31, no. 4, Jul. 2021, pp. 465-468. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2021.07.009.

Keywords

diffuse reflectance spectroscopy
halide perovskites
heterovalent doping
photo-resistant solids
photosensitive solids
photostimulated defect formation

Abstract

Two series of CsPbBr3 perovskites doped with Bi or Ag were synthesized and investigated for photostimulated defect formation. It was demonstrated that the type and concentration of dopants strongly affect the absorption spectra and kinetics of photostimulated defect formation.

References

1.
Organometal Halide Perovskites as Visible-Light Sensitizers for Photovoltaic Cells
Kojima A., Teshima K., Shirai Y., Miyasaka T.
Journal of the American Chemical Society, 2009
2.
Best Research-Cell Efficiency Chart, the National Renewable Energy Laboratory, Golden, CO, December 12, 2020. https://www.nrel.gov/pv/ cell-efficiency.html.
5.
Materials chemistry and engineering in metal halide perovskite lasers.
Dong H., Zhang C., Liu X., Yao J., Zhao Y.S.
Chemical Society Reviews, 2020
7.
Inorganic caesium lead iodide perovskite solar cells
Eperon G.E., Paternò G.M., Sutton R.J., Zampetti A., Haghighirad A.A., Cacialli F., Snaith H.J.
Journal of Materials Chemistry A, 2015
8.
Solution-Phase Synthesis of Cesium Lead Halide Perovskite Nanowires.
Zhang D., Eaton S.W., Yu Y., Dou L., Yang P.
Journal of the American Chemical Society, 2015
9.
Marchenko E.I., Fateev S.A., Petrov A.A., Goodilin E.A., Tarasov A.B.
Mendeleev Communications, 2020
10.
Complete Dopant Substitution by Spinodal Decomposition in Mn-Doped Two-Dimensional CsPbCl3 Nanoplatelets
Li Z., Hofman E., Davis A.H., Khammang A., Wright J.T., Dzikovski B., Meulenberg R.W., Zheng W.
Chemistry of Materials, 2018
11.
Perovskite Materials for Light-Emitting Diodes and Lasers
Veldhuis S.A., Boix P.P., Yantara N., Li M., Sum T.C., Mathews N., Mhaisalkar S.G.
Advanced Materials, 2016
12.
High-performance perovskite photodetectors based on solution-processed all-inorganic CsPbBr3 thin films
Li Y., Shi Z., Li S., Lei L., Ji H., Wu D., Xu T., Tian Y., Li X.
Journal of Materials Chemistry C, 2017
13.
Perovskite nanostructures for photovoltaic and energy storage devices
Kostopoulou A., Kymakis E., Stratakis E.
Journal of Materials Chemistry A, 2018
14.
Bright and fast scintillations of an inorganic halide perovskite CsPbBr3 crystal at cryogenic temperatures
Mykhaylyk V.B., Kraus H., Kapustianyk V., Kim H.J., Mercere P., Rudko M., Da Silva P., Antonyak O., Dendebera M.
Scientific Reports, 2020
15.
B-Site doped lead halide perovskites: synthesis, band engineering, photophysics, and light emission applications
Luo B., Li F., Xu K., Guo Y., Liu Y., Xia Z., Zhang J.Z.
Journal of Materials Chemistry C, 2019
17.
Engineering Interfacial Charge Transfer in CsPbBr3 Perovskite Nanocrystals by Heterovalent Doping.
Begum R., Parida M.R., Abdelhady A.L., Murali B., Alyami N.M., Ahmed G.H., Hedhili M.N., Bakr O.M., Mohammed O.F.
Journal of the American Chemical Society, 2016
18.
Invalidity of Band-Gap Engineering Concept for Bi3+ Heterovalent Doping in CsPbBr3 Halide Perovskite
Lozhkina O.A., Murashkina A.A., Shilovskikh V.V., Kapitonov Y.V., Ryabchuk V.K., Emeline A.V., Miyasaka T.
Journal of Physical Chemistry Letters, 2018
19.
Heterovalent Dopant Incorporation for Bandgap and Type Engineering of Perovskite Crystals.
Abdelhady A.L., Saidaminov M.I., Murali B., Adinolfi V., Voznyy O., Katsiev K., Alarousu E., Comin R., Dursun I., Sinatra L., Sargent E.H., Mohammed O.F., Bakr O.M.
Journal of Physical Chemistry Letters, 2016
20.
Dedoping of Lead Halide Perovskites Incorporating Monovalent Cations.
Abdi-Jalebi M., Pazoki M., Philippe B., Dar M.I., Alsari M., Sadhanala A., Divitini G., Imani R., Lilliu S., Kullgren J., Rensmo H., Grätzel M., Friend R.H.
ACS Nano, 2018
21.
10.1016/j.mencom.2021.07.009_b0105
Lushchik
Raspad elektronnykh vozbuzhdenii s obrazovaniem defektov v tverdykh telakh (Decay of Electronic Excitations with Defect Formation in Solids), 1989
22.
10.1016/j.mencom.2021.07.009_b0110
A. R. Silin’ and A. N. Trukhin
Zinatne, Riga, 1985
23.
Spectroscopic and Photoluminescence Studies of a Wide Band Gap Insulating Material:  Powdered and Colloidal ZrO2 Sols
Emeline A., Kataeva G.V., Litke A.S., Rudakova A.V., Ryabchuk V.K., Serpone N.
Langmuir, 1998
24.
Evolution of Anion and Cation Excitons in Alkali Halide Crystals
Lushchik C., Lushchik A.
Physics of the Solid State, 2018
25.
Radiation creation of cation defects in alkali halide crystals: Review and today's concept (Review Article)
Lushchik A., Lushchik C., Vasil'chenko E., Popov A.I.
Low Temperature Physics, 2018