论文标题

溴化铅钙钛矿纳米晶体的组成,大小和表面功能化依赖性光学特性

Composition, Size, and Surface Functionalization dependent Optical Properties of Lead Bromide Perovskite Nanocrystals

论文作者

Ijaz, Palvasha, Imran, Muhammad, Soares, Márcio M., Tolentino, Hélio C. N., Martín-García, Beatriz, Giannini, Cinzia, Moreels, Iwan, Manna, Liberato, Krahne, Roman

论文摘要

光致发光(PL),颜色纯度和铅卤化物钙钛矿纳米晶体的稳定性取决于表面钝化。我们介绍了一项研究,溴化溴化物钙钛矿纳米晶体的温度依赖性PL和PL衰减动力学,其特征在于不同类型的阳离子,表面配体和纳米晶体尺寸。在整个过程中,我们观察到从低温到环境温度的单个发射峰。 PL衰减动力学以表面钝化为主,并且具有第四纪溴化铵(QAB)的合成后配体交换会导致在较大温度范围内更稳定的钝化。 PL强度来自50K-250K,这表明配体结合在环境温度下与热能竞争。尽管纳米晶体的PL动力学有良好的PL动力学用QAB配体(在大温度范围内的单指数PL衰减,PL强度升高和稳定性)钝化,但表面钝化仍需要改善纳米晶膜中发射强度的提高。

The photoluminescence (PL), color purity, and stability of lead halide perovskite nanocrystals depend critically on the surface passivation. We present a study on the temperature dependent PL and PL decay dynamics of lead bromide perovskite nanocrystals characterized by different types of A cations, surface ligands, and nanocrystal sizes. Throughout, we observe a single emission peak from cryogenic to ambient temperature. The PL decay dynamics are dominated by the surface passivation, and a post-synthesis ligand exchange with a quaternary ammonium bromide (QAB) results in a more stable passivation over a larger temperature range. The PL intensity is highest from 50K-250K, which indicates that the ligand binding competes with the thermal energy at ambient temperature. Despite the favorable PL dynamics of nanocrystals passivated with QAB ligands (monoexponential PL decay over a large temperature range, increased PL intensity and stability), the surface passivation still needs improvement toward increased emission intensity in nanocrystal films.

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