Electrochemical Deposition of Organometallic Halide Perovskite Single-Crystal Particles with Density Gradients and Their Stability, Fluorescence, and Photoelectrochemical Properties

Organometallic halide perovskites have gained immense scientific interest because of their unique optoelectronic properties that can benefit applications such as solar cells, lasers, and light-emitting diodes. Here, we develop a facile method to form a density gradient of MAPbI3 (MA = methylammonium...

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Veröffentlicht in:Journal of physical chemistry. C 2020-05, Vol.124 (19), p.10659-10668
Hauptverfasser: Yadav, Jeetika, Liang, Qiaoli, Pan, Shanlin
Format: Artikel
Sprache:eng
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Zusammenfassung:Organometallic halide perovskites have gained immense scientific interest because of their unique optoelectronic properties that can benefit applications such as solar cells, lasers, and light-emitting diodes. Here, we develop a facile method to form a density gradient of MAPbI3 (MA = methylammonium) crystal particles as a function of the electrochemical potential gradient across an indium-doped tin oxide (ITO) electrode. At the high-potential end of the ITO, a high density of nucleation sites is formed, yielding high-density MAPbI3 crystals with a broad particle size distribution. Less density of MAPbI3 crystals can be optically resolved at the low-potential end of the ITO. Spatial distributions of fluorescence and photoelectrochemical properties of the perovskite films show the same clear trends as the particle density gradients. Mass spectrum imaging of PbO2 and MAPbI3 gradients shows a spatial distribution of PbO2, MAPbI3 of fresh sample and PbI2 for aged sample. Mass spectrum imaging also reveals a poor structural stability of MAPbI3 crystals formed at the high-potential side of the gradient because of their fast growth kinetics producing smaller nucleation sites.
ISSN:1932-7447
1932-7455
DOI:10.1021/acs.jpcc.0c01536