2022
DOI: 10.1002/er.7774
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Towards high tin‐based halide organic‐inorganic perovskite photovoltaic cells efficiency improvement: SCAPS 1D modeling

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Cited by 7 publications
(12 citation statements)
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“…We varied both the bulk and interfacial defects density from 1E9 to 1E14 cm −2 to be consistent with previous work [27]. Indeed, as Nt increases, there are more deep trap sites for charge carriers along the grain boundaries or at the levels of bulk and surface defects.…”
Section: Influences Of Bulk and Interfacial Defect Density Of The Per...supporting
confidence: 63%
See 2 more Smart Citations
“…We varied both the bulk and interfacial defects density from 1E9 to 1E14 cm −2 to be consistent with previous work [27]. Indeed, as Nt increases, there are more deep trap sites for charge carriers along the grain boundaries or at the levels of bulk and surface defects.…”
Section: Influences Of Bulk and Interfacial Defect Density Of The Per...supporting
confidence: 63%
“…Where J ph denotes the photo-current, q designates the electronic charge, R stands for reflection coefficient, and E inc represents the incident energy. The open circuit voltage (V OC ) can be estimated through the following formula [13]: Where n denotes the ideally factor, k represents Boltzmann's constant, T designates the absolute temperature, I 0 and I sc stand for the dark and short current densities, respectively, and q represents the elementary charge.…”
Section: Theory and Numerical Modelling 21 Theorymentioning
confidence: 99%
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“…This is a relevant result that supports once again the stability of the obtained optimized cell. [ 33 ]…”
Section: Resultsmentioning
confidence: 99%
“…These layers are critical as they mainly contribute to solar device performance. The hybrid Perovskite solar cells (PSCs), which are based on any organic–inorganic active material complex following the formula AMX 3 1 , 2 , where X is a halide ion, M is a tiny divalent metal cation, and A is a cation of organic/inorganic nature, analogous to calcium titanate CaTiO 3 ; they are positioning themselves as a serious competitor (PCE ~ 24%) to silicon technology (PCE ~ 27%) 3 . The photoactive properties of perovskites exhibit excellent carrier mobilities (10–200 cm 2 V –2 s –1 ), negligible dipolar binding energies (0.3 eV), long carrier diffusion lengths (> 1 µm) 4 , excellent carrier lifetimes (270 ns), dramatic defect densities tolerance (10 16 cm –3 ), robust bipolar transport properties, and a high dielectric constant 4 .…”
Section: Introductionmentioning
confidence: 99%