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Using the Diamagnetic Coefficients to Estimate the Reduced Effective Mass in 2D Layered Perovskites: New Insight from High Magnetic Field Spectroscopy

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DataCite Commons2025-07-25 更新2025-04-16 收录
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Data related to the publication:Dyksik, M. (2022). Using the Diamagnetic Coefficients to Estimate the Reduced Effective Mass in 2D Layered Perovskites: New Insight from High Magnetic Field Spectroscopy. In International Journal of Molecular Sciences (Vol. 23, Issue 20). MDPI. https://doi.org/10.3390/ijms232012531The ZIP archive contains raw data of modeling of the effective mass of excitons.The archive contains the following files which are related to the following Figures of the main text.Effective_mass_data_review.dat - Fig. 3bThe file contains reduced effective mass values.File structure:First row abbreviations: DFT - Density Functional Theory; exp - experimentFirst column (organic spacer type): BA - butylammonium, HA - hexylammonium, DA - decylammonium, PEA - phenyetylammonium, basni - (BA)2SnI4, BAPbBr4 - (BA)2PbBr4, n - number of inorganic sheetseffective_mass_model.dat - Fig. 4cFile structure (in columns):diamagnetic coefficient (micro*eV/T^2)reduced effective mass (units of rest electron mass)Comment (organic spacer type): BA - butylammonium, HA - hexylammonium, DA - decylammonium, PEA - phenyetylammonium, basni - (BA)2SnI4, BAPbBr4 - (BA)2PbBr4, n - number of inorganic sheets.modeled_curve.dat - Fig. 4cFile structureConsecutive columns are X and Y.eps - dielectric constantY(x) = 0.0238*(eps^2/x)^(1/3) accordingly to the paper.
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2024-03-18
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