Photophysical properties of halide perovskite CsPb(Br1-xIx)3 thin films and nanowires

被引:10
作者
Markina, D., I [1 ]
Tiguntseva, E. Yu [1 ]
Pushkarev, A. P. [1 ]
Samsonov, M. A. [2 ]
Vengris, M. [3 ]
Munkhbat, B. [4 ]
Shegai, T. [4 ]
Hix, G. B. [5 ]
Zakhidov, A. A. [1 ,6 ]
Makarov, S., V [1 ]
机构
[1] ITMO Univ, St Petersburg 197101, Russia
[2] Univ Pardubice, Pardubice 53210, Czech Republic
[3] Vilnius Univ, Fac Phys, Laser Res Ctr, LT-10223 Vilnius, Lithuania
[4] Chalmers Univ Technol, SE-41296 Gothenburg, Sweden
[5] Univ Wolverhampton, Wolverhampton WV1 1LY, England
[6] Univ Texas Dallas, Richardson, TX 75083 USA
基金
俄罗斯科学基金会;
关键词
Cesium lead halide perovskite; Mixed-halide perovskite; Thin film; Nanowire; Lasing; Segregation; STABILITY; LASERS;
D O I
10.1016/j.jlumin.2019.116985
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Thin films and nanowires based on lead halide perovskites are promising objects for the design of various optoelectronic devices as well as nano- and microlasers. One of the main advantages of such materials is their absorption and photoluminescence spectra tuning across the visible range via the change in their chemical composition, for instance, by substitution of one halide atom (Br) for another one (I) in the crystal lattice of CsPb (Br1-xIx)(3). However, this approach gives materials showing unstable photoluminescence behavior caused by light-induced perovskite phase separation under high-intensity excitation at room temperature. In this work, CsPb(Br1-xIx)(3) thin films and nanowires are obtained by chemical vapor anion exchange method from their CsPbBr3 counterparts fabricated by improved wet chemical methods. Spontaneous and stimulated emission from the mixed-halide and pristine bromide samples are studied. Tribromide nanowires exhibit lasing with relatively low thresholds (10-100 mu J/cm(2)) and high Q-factor of the laser mode up to 3500. The temperature dependence of the photoinitiated phase separation in CsPbBr1.5I1.5 samples is investigated, showing that light-induced phase instability of the mixed-halide nanowires can be suppressed at the somewhat higher temperature (250 K) than the value observed for the thin films having a similar chemical composition. The results obtained are important for the optimization of the functioning of optoelectronic devices based on considered perovskite materials.
引用
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页数:7
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