Data underlying the PhD thesis chapter: Quantifying the Phonon-Induced Contribution to the Urbach Energy in Mixed Sn-Pb Perovskites
DOI: 10.4121/4e959cb5-a58c-4e73-a038-3f1076e35ada
Datacite citation style
Dataset
Data for the XRD, XPS, UV-Vis-NIR spectroscopy, TRMC, carrier mobilities, Urbach energy and data extracted from the literature in the main manuscript and Supporting Information to be submitted in the next future, now comprised in Ch. 4 of my PhD thesis (the corresponding DOI will be provided as soon as possible).
The raw data were collected in the years 2024-2025, using various structural and optoelectronic characterization methods on solution-based spin-coated mixed tin-lead (Sn-Pb) perovskite thin films with varying Sn/Pb ratio to study the Urbach tails and Urbach energy of the layers. The measurements were conducted with varying temperatures, to understand the stability window of the perovskite alpha-phase and separate the contributions of the static component and dynamic phonon-induced component to the Urbach energy. More specifically, all TRMC measurements were conducted under nitrogen. The xy data obtained from X-ray diffraction (XRD) and UV-Vis-NIR spectroscopy were imported into Igor Pro (Wavemetrics). In Igor Pro, these xy data are stored as "waves," corresponding to the values on the x and y axes in the plots. Data for Steady State Microwave Conductance (SSMC) and Time-Resolved Microwave Conductivity (TRMC) were collected directly as waves in Igor Pro on the computers connected to the respective microwave-based setups. Igor Pro was used to generate all data plots.
For further information on file formats and naming, the units and abbreviations used for all measured values and labels, and instructions for opening or modifying Igor Pro files, please refer to the README.pdf included in the dataset. It is strongly recommended to consult the corresponding manuscript once it is published (the corresponding DOI will be provided as soon as possible) for guidance on the files in these datasets, as each file name includes a reference to its associated figure. The main manuscript and Supporting Information (the corresponding DOI will be provided as soon as possible) contains details about the characterization instruments and additional data processing specifics, comprising the process of calculation of the Urbach energy values from the TRMC data.
History
- 2025-11-07 first online, published, posted
Publisher
4TU.ResearchDataFormat
Igorfile/pxpFunding
- Where do we lose potential in perovskite solar cells? (grant code OCENW.KLEIN.076) [more info...] Dutch Research Council (NWO)
Organizations
TU Delf, Faculty of Applied Sciences, Department of Chemical Engineering, Opto-electronic Materials GroupDATA
Files (25)
- 66,562 bytesMD5:
01b6740d001baa42ffd70f79701e674fREADME.pdf - 159,042 bytesMD5:
5fbf4b0ca333a5870f77c1a1dbee86b9Abscoeff_effecttemperature_Fig3.pxp - 157,261 bytesMD5:
a988fe942ea67e1ab18894c14bfc604bAbscoeff_RT_effecttinfraction_Fig2.pxp - 180,270 bytesMD5:
7a6aafc4cc465e9d1c947081ce149beeEUvsT+fit_comparisonliterature_FigS10.pxp - 39,328 bytesMD5:
2f255661814204b536f14a1693404dbcEUvsT+fit_Fig4.pxp - 40,804 bytesMD5:
fac3b96d0ea2aaf7b616923dcae85212EUvstinfraction_comparisonliterature_FigS9.pxp - 704,031 bytesMD5:
0f1206ca42d9a85d0396ae59b2c4c968FA_effecttemperature_FigS8.pxp - 49,518 bytesMD5:
ce473514ce4825d47c2277c35516e718MobilityvsT_FigS7.pxp - 10,460,820 bytesMD5:
058b765ac2315b339838d7d689c394c7TRMC_Sn02_effecttemperature_Fig1.pxp - 8,996,260 bytesMD5:
82dc0a6d41114c3941e0d876c717f1dbTRMC_Sn02_RT_effectexcwavelength_Fig2.pxp - 8,994,328 bytesMD5:
a6f176a047aea337c39a028f26d802b3TRMC_Sn02_RT_effectexcwavelength_FigS6.pxp - 10,031,940 bytesMD5:
5a14b630a8d9d8cf17c0f19c21e12adaTRMC_Sn05_effecttemperature_Fig1.pxp - 7,714,854 bytesMD5:
f897ef55be21be71a8ee1b239bc8ff14TRMC_Sn05_RT_effectexcwavelength_Fig2.pxp - 6,541,829 bytesMD5:
f2637cd49b1015c8c11fd7243b4daa27TRMC_Sn05_RT_effectexcwavelength_FigS6.pxp - 10,528,111 bytesMD5:
cdd4de5787322f95883e40e894733601TRMC_Sn0_effecttemperature_Fig1.pxp - 10,504,598 bytesMD5:
1774cb03444904adff80e3699d0e35bbTRMC_Sn0_RT_effectexcwavelength_Fig2_1.pxp - 5,667,080 bytesMD5:
13af26493a607fdecdf8257c4cf97418TRMC_Sn0_RT_effectexcwavelength_Fig2_2.pxp - 5,666,944 bytesMD5:
3b5420affd0f87e75bbd693ff312072cTRMC_Sn0_RT_effectexcwavelength_FigS6.pxp - 283,516 bytesMD5:
9b34109867cae18f46f28b487d01868fUV-Vis_RT_effecttinfraction_FigS4.pxp - 524,229 bytesMD5:
5f26967048a5878735ed1a336f32fd39UV-Vis_Sn02_effecttemperature_FigS5.pxp - 589,845 bytesMD5:
c6266b8e15dfc5feba831d2fd9981f45UV-Vis_Sn05_effecttemperature_FigS5.pxp - 512,741 bytesMD5:
d8cc2481c8db8e39d1479ac0a14b0220UV-Vis_Sn0_effecttemperature_FigS5.pxp - 2,978,898 bytesMD5:
0dd9a2b0fc87d82ab3e7007a8f71d287XRDvsT_(022)peak_FigS3.pxp - 2,981,191 bytesMD5:
38f94ca1569b92fbfadd0037f8b80918XRDvsT_(111)peak_Fig1.pxp - 2,984,626 bytesMD5:
93a949bd8501397a294a03f56c432deeXRDvsT_patterns_FigS2.pxp -
download all files (zip)
97,358,626 bytes unzipped





