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纳米厚(苯乙铵)碘化铅钙钛矿薄膜的光致发光光谱非均匀展宽及动力学:对光电子学的启示

Inhomogeneous Broadening of Photoluminescence Spectra and Kinetics of Nanometer-Thick (Phenethylammonium)PbI Perovskite Thin Films: Implications for Optoelectronics.

作者信息

Chirvony Vladimir S, Suárez Isaac, Rodríguez-Romero Jesús, Vázquez-Cárdenas Rubén, Sanchez-Diaz Jesus, Molina-Sánchez Alejandro, Barea Eva M, Mora-Seró Iván, Martínez-Pastor Juan P

机构信息

UMDO, Instituto de Ciencia de los Materiales, Universidad de Valencia, Paterna, Valencia 46980, Spain.

Escuela Técnica Superior de Ingeniería, Universidad de Valencia, Burjassot, Valencia 46100, Spain.

出版信息

ACS Appl Nano Mater. 2021 Jun 25;4(6):6170-6177. doi: 10.1021/acsanm.1c00984. Epub 2021 Jun 16.

Abstract

An outstanding potentiality of layered two-dimensional (2D) organic-inorganic hybrid perovskites (2DHPs) is in the development of solar cells, photodetectors, and light-emitting diodes. In 2DHPs, an exciton is localized in an atomically thin lead(II) halide inorganic layer of sub-nanometer thickness as in a quantum well sandwiched between organic layers as energetic and dielectric barriers. In previous years, versatile optical characterization of 2DHPs has been carried out mainly for thin flakes of single crystals and ultrathin (of the order of 20 nm) polycrystalline films, whereas there is a lack of optical characterization of thick (hundreds of nanometers) polycrystalline films, fundamentals for fabrication of devices. Here, with the use of photoluminescence (PL) and absorption spectroscopies, we studied the exciton behavior in ∼200 nm polycrystalline thin films of 2D perovskite (PEA)PbI, where PEA is phenethylammonium. Contrary to the case of ultrathin films, we have found that peak energies and line width of the excitonic bands in our films demonstrate unusual extremely weak sensitivity to temperature in 20-300 K diapason. The excitonic PL band is characterized by a significant (∼30 meV) Stokes shift with respect to the corresponding absorption band as well as by a full absence of the exciton fine structure at cryogenic temperatures. We suggest that the observed effects are due to the large inhomogeneous broadening of the excitonic PL and absorption bands resulting from the (PEA)PbI band gap energy dependence on the number of lead(II) halide layers of individual crystallites. The characteristic time of the exciton energy funneling from higher- to lower-energy crystallites within (PEA)PbI polycrystalline thin films is about 100 ps.

摘要

层状二维有机-无机杂化钙钛矿(2DHPs)的一个突出潜力在于太阳能电池、光电探测器和发光二极管的开发。在2DHPs中,激子局域在厚度为亚纳米级的原子级薄的卤化铅(II)无机层中,就像夹在有机层之间的量子阱一样,有机层起到能量和介电势垒的作用。在过去几年中,2DHPs的通用光学表征主要针对单晶薄片和超薄(约20纳米)多晶薄膜进行,而对于厚(数百纳米)多晶薄膜(器件制造的基础)缺乏光学表征。在此,我们利用光致发光(PL)和吸收光谱,研究了二维钙钛矿(PEA)PbI的约200纳米多晶薄膜中的激子行为,其中PEA是苯乙铵。与超薄薄膜的情况相反,我们发现我们薄膜中激子带的峰值能量和线宽在20 - 300 K范围内对温度表现出异常的极弱敏感性。激子PL带的特征是相对于相应吸收带具有显著(约30 meV)的斯托克斯位移,并且在低温下完全没有激子精细结构。我们认为观察到的这些效应是由于(PEA)PbI带隙能量对单个微晶中卤化铅(II)层数的依赖性导致激子PL和吸收带的大的非均匀展宽。在(PEA)PbI多晶薄膜中,激子能量从高能微晶向低能微晶漏斗传输的特征时间约为100 ps。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c865/9185684/c74f7518e41c/an1c00984_0006.jpg

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