Optimized Substrate Orientations for Highly Uniform Metal Halide Perovskite Film Deposition

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초록

Uniform optoelectronic quality of metal halide perovskite (MHP) films is critical for scalable production in large-area applications, such as photovoltaics and displays. While vapor-based MHP film deposition is advantageous for this purpose, achieving film uniformity can be challenging due to uneven temperature distribution and precursor concentration over the substrate. Here, we propose optimized substrate orientations for the vapor-based fabrication of homogeneous MAPbI(3) thin films, involving a PbI2 primary layer deposition and subsequent conversion using vaporized methylammonium iodide (MAI). Leveraging computational fluid dynamics (CFD) simulations, we confirm that vertical positioning during the PbI(2 )layer growth yields a uniform film with a narrow temperature distribution and minimal boundary layer thickness. However, during the subsequent conversion step, horizontal substrate positioning results in spatially more uniform MAPbI(3) thickness and grain size compared to the vertical placement due to enhanced MAI intercalation. From this optimized substrate positioning, we observe substantial optical homogeneity across the substrate on a centimeter scale, along with uniform and enhanced optoelectronic device performance within photodetector arrays. Our results offer a potential path toward the scalable production of highly uniform perovskite films.

키워드

perovskitevapor depositionmethylammoniumlead iodidecomputational fluid dynamicsthinfilmphotodetectorCHEMICAL-VAPOR-DEPOSITIONSOLAR-CELLSSEQUENTIAL DEPOSITIONHIGH-EFFICIENCYGRAPHENE FILMSTHIN-FILMSPERFORMANCEPRESSUREHETEROJUNCTIONCONVERSION
제목
Optimized Substrate Orientations for Highly Uniform Metal Halide Perovskite Film Deposition
저자
Yu, ChaeeunGbadago, Dela QuarmeHyeong, Seok-KiLee, Seoung-KiHwang, SungwonShin, Naechul
DOI
10.1021/acsami.3c09109
발행일
2023-09-06
유형
Article
저널명
ACS Applied Materials and Interfaces
15
37
페이지
43822 ~ 43834