【2h】

Lasing in robust cesium lead halide perovskite nanowires

机译:发射坚固的卤化铯铅钙钛矿纳米线

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摘要

The rapidly growing field of nanoscale lasers can be advanced through the discovery of new, tunable light sources. The emission wavelength tunability demonstrated in perovskite materials is an attractive property for nanoscale lasers. Whereas organic–inorganic lead halide perovskite materials are known for their instability, cesium lead halides offer a robust alternative without sacrificing emission tunability or ease of synthesis. Here, we report the low-temperature, solution-phase growth of cesium lead halide nanowires exhibiting low-threshold lasing and high stability. The as-grown nanowires are single crystalline with well-formed facets, and act as high-quality laser cavities. The nanowires display excellent stability while stored and handled under ambient conditions over the course of weeks. Upon optical excitation, Fabry–Pérot lasing occurs in CsPbBr3 nanowires with an onset of 5 μJ cm−2 with the nanowire cavity displaying a maximum quality factor of 1,009 ± 5. Lasing under constant, pulsed excitation can be maintained for over 1 h, the equivalent of 109 excitation cycles, and lasing persists upon exposure to ambient atmosphere. Wavelength tunability in the green and blue regions of the spectrum in conjunction with excellent stability makes these nanowire lasers attractive for device fabrication.
机译:纳米激光的迅速发展领域可以通过发现新的可调谐光源来推进。钙钛矿材料中证明的发射波长可调性对于纳米级激光器是有吸引力的。有机-无机卤化铅钙钛矿材料以其不稳定性而闻名,而卤化铯铯提供了一种强大的替代方案,而不会牺牲发射可调性或易于合成。在这里,我们报道了铯铅卤化物纳米线的低温,溶液相生长,表现出低阈值激射和高稳定性。成长中的纳米线是具有良好刻面的单晶,可充当高质量的激光腔。纳米线在数周的时间内在环境条件下存储和处理时表现出出色的稳定性。在光激发下,法布里-珀罗激光发射发生在CsPbBr3纳米线中,其起始频率为5μJcm -2 ,而纳米线腔显示的最大品质因数为1,009±5。维持超过1小时,相当于10 9 激发周期,并且在暴露于周围大气中时仍会持续发射激光。光谱的绿色和蓝色区域中的波长可调性以及出色的稳定性,使得这些纳米线激光器对器件制造具有吸引力。

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