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甲脒铅卤化物钙钛矿中的磁光旋转色散和磁圆二色性。

Magnetic optical rotary dispersion and magnetic circular dichroism in methylammonium lead halide perovskites.

作者信息

Stamper Caleb, Sabatini Randy P, Bernardi Stefano, Liao Chwenhaw, Dennis Emma, Sharma Ashish, Widmer-Cooper Asaph, Saidaminov Makhsud I, Ho-Baillie Anita W Y, Lakhwani Girish

机构信息

ARC Centre of Excellence in Exciton Science, School of Chemistry, University of Sydney, Sydney, NSW, Australia.

Institute of Photonics and Optical Science, The University of Sydney, Sydney, NSW, Australia.

出版信息

Chirality. 2021 Oct;33(10):610-617. doi: 10.1002/chir.23346. Epub 2021 Aug 31.

Abstract

Large magnetic optical rotary dispersion (Faraday rotation) has been demonstrated recently in methylammonium lead bromide. Here, we investigate the prospect of extending the active spectral range by altering the halogen. We also investigate the origins of large Faraday rotation in these diamagnetic materials using magnetic circular dichroism (MCD) spectroscopy and the Kramers-Kronig relations. We find that, while MAPbCl (MA = methylammonium) single crystals exhibit a large Verdet constant in the blue, no appreciable Faraday rotation is observed in the red/near infra-red for MAPbI single crystals. However, in all film samples, we find clear evidence of large MCD resulting from the Zeeman splitting of the highly resonant 1s exciton state. Our Kramers-Kronig calculations of Faraday rotation based on MCD data matches well with the dispersion of our experimental data for MAPbCl and MAPbBr , with some deviation in magnitude-demonstrating the excitonic nature of Faraday rotation in these materials. However, our calculations predict significant Faraday rotation in MAPbI , contrary to our experimental results, indicating a potential discrepancy between the properties of the thin film and single crystal.

摘要

最近在甲基溴化铅中已证实存在大磁光旋转色散(法拉第旋转)。在此,我们研究通过改变卤素扩展活性光谱范围的前景。我们还利用磁圆二色性(MCD)光谱和克拉默斯-克勒尼希关系研究这些抗磁性材料中大法拉第旋转的起源。我们发现,虽然MAPbCl(MA = 甲基铵)单晶在蓝光区域表现出大的费尔德常数,但对于MAPbI单晶,在红光/近红外区域未观察到明显的法拉第旋转。然而,在所有薄膜样品中,我们发现了由高共振1s激子态的塞曼分裂导致的大MCD的明确证据。我们基于MCD数据对法拉第旋转的克拉默斯-克勒尼希计算与MAPbCl和MAPbBr的实验数据色散很好地匹配,只是在量级上有一些偏差,这表明这些材料中法拉第旋转的激子性质。然而,我们的计算预测MAPbI中存在显著的法拉第旋转,这与我们的实验结果相反,表明薄膜和单晶的性质之间可能存在差异。

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