Yevgeny Rakita

Senior Academic

Low-Temperature Solution-Grown CsPbBr3 Single Crystals and Their Characterization

Yevgeny Rakita, Nir Kedem, Satyajit Gupta, Aditya Sadhanala, Vyacheslav Kalchenko, Marcus L. Böhm, Michael Kulbak, Richard H. Friend, David Cahen, Gary Hodes

Cesium lead bromide (CsPbBr3) was recently introduced as a potentially high performance thin-film halide perovskite (HaP) material for optoelectronics, including photovoltaics, significantly more stable than MAPbBr3 (MA = CH3NH3+). Because of the importance of single crystals to study relevant material properties per se, crystals grown under conditions comparable to those used for preparing thin films, i.e., low-temperature solution-based growth, are needed. We show here two simple ways, antisolvent-vapor saturation or heating a solution containing retrograde soluble CsPbBr3, to grow single crystals of CsPbBr3 from a precursor solution, treated with acetonitrile (MeCN) or methanol (MeOH). The precursor solutions are stable for at least several months. Millimeter-sized crystals are grown without crystal-seeding and can provide a 100% yield of CsPbBr3 perovskite crystals, avoiding a CsBr-rich (or PbBr2-rich) composition, which is often present alongside the perovskite phase. Further growth is demonstrated to be possible with crystal seeding. The crystals are characterized in several ways, including first results of charge carrier lifetime (30 ns) and an upper-limit of the Urbach energy (19 meV). As the crystals are grown from a polar aprotic solvent (DMSO), which is similar to those used to grow hybrid organic-inorganic HaP crystals, this may allow growing mixed (organic and inorganic) monovalent cation HaP crystals.

Publication language English
Pages 5717-5725
Volume 16
Issue number 10
Publication status Published - 05.10.2016

ASJC Scopus subject areas

General Chemistry
General Materials Science
Condensed Matter Physics
Access to Document
10.1021/acs.cgd.6b00764
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Link to publication in Scopus