• Laser & Optoelectronics Progress
  • Vol. 61, Issue 5, 0516001 (2024)
Yunyun Yang, Jingyi Wu, Yinyi Ma, Jue Gong, and Faming Li*
Author Affiliations
  • School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu 611731, Sichuan , China
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    DOI: 10.3788/LOP230911 Cite this Article Set citation alerts
    Yunyun Yang, Jingyi Wu, Yinyi Ma, Jue Gong, Faming Li. Low-Dimensional Perovskite Templated Growth of MAPbI3 Perovskite Crystals and Photovoltaic Performance of Solar Cells[J]. Laser & Optoelectronics Progress, 2024, 61(5): 0516001 Copy Citation Text show less
    Schematic diagrams of i-BA+, BA+ and PEA+ organic cations and dual source vapor deposition
    Fig. 1. Schematic diagrams of i-BA+, BA+ and PEA+ organic cations and dual source vapor deposition
    Quasi-2D perovskite templates with different organic spacers (a) UV-Vis spectra; (b) XRD patterns
    Fig. 2. Quasi-2D perovskite templates with different organic spacers (a) UV-Vis spectra; (b) XRD patterns
    Crystal structures of the films. (a) XRD pattern; (b) (110) peak intensity and FWHM
    Fig. 3. Crystal structures of the films. (a) XRD pattern; (b) (110) peak intensity and FWHM
    control, @i-BAI, @BAI and @PEAI film morphologies. (a)‒(d) Surface SEM; (e)‒(h) cross-sectional SEM; (i)‒(l) the particle size statistics of the corresponding films, respectively
    Fig. 4. control, @i-BAI, @BAI and @PEAI film morphologies. (a)‒(d) Surface SEM; (e)‒(h) cross-sectional SEM; (i)‒(l) the particle size statistics of the corresponding films, respectively
    Photoelectric properties of MAPbI3 thin film. (a) UV-Vis spectra; (b) PL spectra; (c) TRPL spectra
    Fig. 5. Photoelectric properties of MAPbI3 thin film. (a) UV-Vis spectra; (b) PL spectra; (c) TRPL spectra
    Evaporation process parameters. (a) Evaporation temperature; (b) evaporation rate and chamber pressure
    Fig. 6. Evaporation process parameters. (a) Evaporation temperature; (b) evaporation rate and chamber pressure
    Template induced growth process. (a) Optical photographs of the films with different thicknesses; (b) quasi-2D perovskite surface morphology; (c) Gibbs free energy versus particle radius; (d) morphological evolution of control films; (e) morphological evolution of @i-BAI films
    Fig. 7. Template induced growth process. (a) Optical photographs of the films with different thicknesses; (b) quasi-2D perovskite surface morphology; (c) Gibbs free energy versus particle radius; (d) morphological evolution of control films; (e) morphological evolution of @i-BAI films
    MAPbI3 thin film XPS spectra. (a) Pb4f; (b) I3d; (c) N1s; (d) I∶N∶Pb element ratio
    Fig. 8. MAPbI3 thin film XPS spectra. (a) Pb4f; (b) I3d; (c) N1s; (d) I∶N∶Pb element ratio
    Band gap and UPS tests of thin films. (a) tauc plot; (b) cut-off Region; (c) VB edge region; (d) schematic diagram of the energy band structure
    Fig. 9. Band gap and UPS tests of thin films. (a) tauc plot; (b) cut-off Region; (c) VB edge region; (d) schematic diagram of the energy band structure
    quasi-2D/3D perovskite solar cell performance. (a) J-V curve; (b) EQE; (c) short-circuit current distribution; (d) PCE distribution
    Fig. 10. quasi-2D/3D perovskite solar cell performance. (a) J-V curve; (b) EQE; (c) short-circuit current distribution; (d) PCE distribution
    Solar CellsVoc /VJsc /(mA·cm-2FF /%PCE /%
    control1.1021.1269.4516.21
    quasi-2D/3D1.0723.9176.1519.55
    Table 1. Photovoltaic parameters of J-V curves shown in Fig. 10(a).
    Yunyun Yang, Jingyi Wu, Yinyi Ma, Jue Gong, Faming Li. Low-Dimensional Perovskite Templated Growth of MAPbI3 Perovskite Crystals and Photovoltaic Performance of Solar Cells[J]. Laser & Optoelectronics Progress, 2024, 61(5): 0516001
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