4.3 Article

Threshold Size Effects in the Patterned Crystallization of Hybrid Halide Perovskites for Random Lasing

期刊

ADVANCED PHOTONICS RESEARCH
卷 2, 期 3, 页码 -

出版社

WILEY
DOI: 10.1002/adpr.202000097

关键词

confined crystallization; directional random lasing; grating patterned substrates; hybrid halide perovskites; threshold size effects

资金

  1. National Natural Science foundation of China [61735002, 12074020]
  2. Beijing Municipal Education Commission [KZ202010005002]
  3. Beijing Key Lab of Microstructure and Property of Advanced Materials

向作者/读者索取更多资源

A threshold effect in periodical patterning of hybrid halide perovskites and a directional output coupling effect in incoherent random lasing from patterned materials have been reported. The confinement of the random crystallization process is strongly dependent on the width of grating grooves, which can be optimized by tuning the patterning periods. The best lasing performance is achieved for a grating period of 10 μm, which corresponds to the highest quality of crystal strips.
A threshold effect in the periodical patterning of the hybrid halide perovskites and a directional output coupling effect in the incoherent random lasing from the patterned materials are reported. Using 1D gratings, the random crystallization process is confined into the grating grooves, producing continuous microstrips of CH3NH3PbBr3 along the groove channels. However, the confinement is strongly dependent on the width of the grating grooves, which can be optimized by tuning the patterning periods. It is thus discovered that the most orderly arranged crystal strips are achieved for a grating period of 10 mu m, corresponding to a channel width of about 5 mu m, which is the lower limit for the formation of continuous crystal strips. Complicated interfaces inside such randomly organized multicrystals supplied scattering centers for optical gain mechanisms. Thus, incoherent random lasing actions are observed for all of these patterned structures, however, the best lasing performance is achieved for a grating period of 10 mu m, which agrees with the highest quality of the crystal strips. The patterned substrate with a 1D grating supplies mechanisms for directional crystallization of hybrid halide perovskites and directional output coupling of random laser emission, enhancing significantly the practical application possibilities of such random lasers.

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