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Enhancing perovskite solar cells efficiency via bulk passivation of light absorbing material with L-cysteine hydrochloride

Nikita Nikolaevich Chertorizhskiy 1
Nikita Nikolaevich Chertorizhskiy
Artem Vladislavovich Trubnikov 2
Artem Vladislavovich Trubnikov
Alexander Vital'evich Kurkin 2
Alexander Vital'evich Kurkin
Eugene Alekseevich Goodilin
Alexey Borisovich Tarasov 1, 2
Alexey Borisovich Tarasov
1 Department of Materials Science, M.V. Lomonosov Moscow State University, Moscow, Russian Federation
2 Department of Chemistry, M.V. Lomonosov Moscow State University, Moscow, Russian Federation
Published 2023-09-01
CommunicationVolume 33, Issue 5, 679-681
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Udalova N. N. et al. Enhancing perovskite solar cells efficiency via bulk passivation of light absorbing material with L-cysteine hydrochloride // Mendeleev Communications. 2023. Vol. 33. No. 5. pp. 679-681.
GOST all authors (up to 50) Copy
Udalova N. N., Chertorizhskiy N. N., Nemygina E. M., Trubnikov A. V., Kurkin A. V., Goodilin E. A., Tarasov A. B. Enhancing perovskite solar cells efficiency via bulk passivation of light absorbing material with L-cysteine hydrochloride // Mendeleev Communications. 2023. Vol. 33. No. 5. pp. 679-681.
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TY - JOUR
DO - 10.1016/j.mencom.2023.09.028
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2023.09.028
TI - Enhancing perovskite solar cells efficiency via bulk passivation of light absorbing material with L-cysteine hydrochloride
T2 - Mendeleev Communications
AU - Udalova, Natalia Nikolaevna
AU - Chertorizhskiy, Nikita Nikolaevich
AU - Nemygina, Elizaveta Maksimovna
AU - Trubnikov, Artem Vladislavovich
AU - Kurkin, Alexander Vital'evich
AU - Goodilin, Eugene Alekseevich
AU - Tarasov, Alexey Borisovich
PY - 2023
DA - 2023/09/01
PB - Mendeleev Communications
SP - 679-681
IS - 5
VL - 33
ER -
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@article{2023_Udalova,
author = {Natalia Nikolaevna Udalova and Nikita Nikolaevich Chertorizhskiy and Elizaveta Maksimovna Nemygina and Artem Vladislavovich Trubnikov and Alexander Vital'evich Kurkin and Eugene Alekseevich Goodilin and Alexey Borisovich Tarasov},
title = {Enhancing perovskite solar cells efficiency via bulk passivation of light absorbing material with L-cysteine hydrochloride},
journal = {Mendeleev Communications},
year = {2023},
volume = {33},
publisher = {Mendeleev Communications},
month = {Sep},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2023.09.028},
number = {5},
pages = {679--681},
doi = {10.1016/j.mencom.2023.09.028}
}
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Udalova, Natalia Nikolaevna, et al. “Enhancing perovskite solar cells efficiency via bulk passivation of light absorbing material with L-cysteine hydrochloride.” Mendeleev Communications, vol. 33, no. 5, Sep. 2023, pp. 679-681. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2023.09.028.

Keywords

defect passivation
hybrid halide perovskites.
L-cysteine hydrochloride
perovskite solar cells
power conversion efficiency increase

Abstract

L-Cysteine hydrochloride (CysCl) has been found to be an effective additive to hybrid halide perovskites, improving both the quality of perovskite films and the operando parameters of perovskite solar cells. The origin of the CysCl effect on the mixed-cation hybrid halide perovskite and related photovoltaic devices has been disclosed.

References

.
How to stabilize standard perovskite solar cells to withstand operating conditions under an ambient environment for more than 1000 hours using simple and universal encapsulation
.
New Pigeonholing Approach for Selection of Solvents Relevant to Lead Halide Perovskite Processing
Tutantsev A.S., Udalova N.N., Fateev S.A., Petrov A.A., Chengyuan W., Maksimov E.G., Goodilin E.A., Tarasov A.B.
Journal of Physical Chemistry C, 2020
.
Petrov A.A., Marchenko E.I., Fateev S.A., Yumao L., Goodilin E.A., Tarasov A.B.
Mendeleev Communications, 2022
.
Stabilizing halide perovskite surfaces for solar cell operation with wide-bandgap lead oxysalts
Yang S., Chen S., Mosconi E., Fang Y., Xiao X., Wang C., Zhou Y., Yu Z., Zhao J., Gao Y., De Angelis F., Huang J.
Science, 2019
.
Passivation in perovskite solar cells: A review
Zhao P., Kim B.J., Jung H.S.
Materials Today Energy, 2018
.
Defect passivation in hybrid perovskite solar cells using quaternary ammonium halide anions and cations
Zheng X., Chen B., Dai J., Fang Y., Bai Y., Lin Y., Wei H., Zeng X., Huang J.
Nature Energy, 2017
.
Progress in Multifunctional Molecules for Perovskite Solar Cells
Zhang Z., Wu J., Li S., Liu S., Wang Q., Mei A., Rong Y., Han H., Hu Y.
Solar RRL, 2019
.
Multifunctional molecular modulators for perovskite solar cells with over 20% efficiency and high operational stability
Bi D., Li X., Milić J.V., Kubicki D.J., Pellet N., Luo J., LaGrange T., Mettraux P., Emsley L., Zakeeruddin S.M., Grätzel M.
Nature Communications, 2018
.
Imperfections and their passivation in halide perovskite solar cells.
Chen B., Rudd P.N., Yang S., Yuan Y., Huang J.
Chemical Society Reviews, 2019
.
Perovskite-based solar cells: impact of morphology and device architecture on device performance
Salim T., Sun S., Abe Y., Krishna A., Grimsdale A.C., Lam Y.M.
Journal of Materials Chemistry A, 2015
.
High-Performance Perovskite Single-Junction and Textured Perovskite/Silicon Tandem Solar Cells via Slot-Die-Coating
Subbiah A.S., Isikgor F.H., Howells C.T., De Bastiani M., Liu J., Aydin E., Furlan F., Allen T.G., Xu F., Zhumagali S., Hoogland S., Sargent E.H., McCulloch I., De Wolf S.
ACS Energy Letters, 2020
.
Modifying perovskite solar cells with l(+)-cysteine at the interface between mesoporous TiO2 and perovskite
Wu P., Ma X., Zhao B., Liu C., Chen Y., Yang G., Li X.
Sustainable Energy and Fuels, 2020
.
Butanediammonium Salt Additives for Increasing Functional and Operando Stability of Light-Harvesting Materials in Perovskite Solar Cells
Udalova N.N., Moskalenko A.K., Belich N.A., Ivlev P.A., Tutantsev A.S., Goodilin E.A., Tarasov A.B.
Nanomaterials, 2022