Formamidinium Lead Iodide Perovskite Thin Films Formed by Two-Step Sequential Method: Solvent–Morphology Relationship

  • Cimrová, Věra
  • Guesmi, Mariem
  • Eom, Sangwon
  • Kang, Youngjong
  • Výprachtický, Drahomír
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초록

Thin films made of formamidinium lead iodide (FAPbI3) perovskites prepared by a two-step sequential deposition method using various solvents for formamidinium iodide (FAI) - isopropanol, n-butanol and tert-butanol, were studied with the aim of finding a correlation between morphology and solvent properties to improve film quality. They were characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM) and their photophysical properties were studied by means of absorption and photoluminescence (PL) spectroscopies. XRD patterns, absorption and PL spectra proved α-phase formation for all selected solvents. An excessive amount of PbI2 found in perovskite films prepared with n-butanol indicates incomplete conversion. Thin film morphology, such as grain and crystallite size, depended on the solvent. Using tert-butanol, thin films with a very large grain size of up to several micrometers and with preferred crystallite orientation were fabricated. The grain size increased as follows: 0.2–0.5, 0.2–1 and 2–5 µm for isopropanol, n-butanol and tert-butanol, respectively. A correlation between the grain size and viscosity, electric permittivity and polarizability of the solvent could be considered. Our results, including fabrication of perovskite films with large grains and fewer grain boundaries, are important and of interest for many optoelectronic applications.

키워드

formamidinium lead iodidemorphologyperovskitephotophysicsSEMXRDHALIDE PEROVSKITESACTIVE LAYERGRAIN-GROWTHSOLAR-CELLSONE-STEPCRYSTALPERFORMANCEMETHYLAMMONIUMCH3NH3PBI3DEPOSITION
제목
Formamidinium Lead Iodide Perovskite Thin Films Formed by Two-Step Sequential Method: Solvent–Morphology Relationship
저자
Cimrová, VěraGuesmi, MariemEom, SangwonKang, YoungjongVýprachtický, Drahomír
DOI
10.3390/ma16031049
발행일
2023-02
유형
Article
저널명
Materials
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