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层状钙钛矿2-噻吩甲基碘化铅的温度依赖性结构和光电性质

Temperature-Dependent Structural and Optoelectronic Properties of the Layered Perovskite 2-Thiophenemethylammonium Lead Iodide.

作者信息

Deveikis Justas, Giza Marcin, Walker David, Liu Jie, Wilson Claire, Gallop Nathaniel P, Docampo Pablo, Lloyd-Hughes James, Milot Rebecca L

机构信息

Department of Physics, University of Warwick, Coventry CV4 7 AL, United Kingdom.

School of Chemistry, University of Glasgow, Glasgow G12 8QQ, United Kingdom.

出版信息

J Phys Chem C Nanomater Interfaces. 2024 Jul 25;128(31):13108-13120. doi: 10.1021/acs.jpcc.4c03221. eCollection 2024 Aug 8.

Abstract

Improved knowledge of the influence of temperature upon layered perovskites is essential to enable perovskite-based devices to operate over a broad temperature range and to elucidate the impact of structural changes upon the optoelectronic properties. We examined the Ruddlesden-Popper layered perovskite 2-thiophenemethylammonium lead iodide (ThMAPbI) and observed a structural phase transition between a high- and a low-temperature phase at 220 K using temperature-dependent X-ray diffraction, UV-visible absorption, and photoluminescence (PL) spectroscopy. The structural phase transition altered the tilt pattern of the inorganic octahedra layer, modifying the absorption and PL spectra. Further, we found a narrow and intense additional PL peak in the low-temperature phase, which we assigned to radiative emission from a defect-bound exciton state. In both phases we determined the thermal expansion coefficient and found values similar to those of cubic 3D perovskites, i.e., larger than those of typical substrates such as glass. These results demonstrate that the organic spacer plays a critical role in controlling the temperature-dependent structural and optoelectronic properties of layered perovskites and suggests more widely that strain management strategies may be needed to fully utilize layered perovskites in device applications.

摘要

深入了解温度对层状钙钛矿的影响,对于使基于钙钛矿的器件能够在较宽的温度范围内工作,并阐明结构变化对光电性能的影响至关重要。我们研究了Ruddlesden-Popper层状钙钛矿2-噻吩甲基碘化铵铅(ThMAPbI),并通过变温X射线衍射、紫外可见吸收光谱和光致发光(PL)光谱观察到在220K时发生了高温相和低温相之间的结构相变。结构相变改变了无机八面体层的倾斜模式,从而改变了吸收光谱和PL光谱。此外,我们在低温相中发现了一个窄而强的额外PL峰,我们将其归因于缺陷束缚激子态的辐射发射。在两个相中,我们都测定了热膨胀系数,发现其值与立方3D钙钛矿的值相似,即大于玻璃等典型衬底的值。这些结果表明,有机间隔层在控制层状钙钛矿的温度依赖性结构和光电性能方面起着关键作用,并更广泛地表明,可能需要应变管理策略来在器件应用中充分利用层状钙钛矿。

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