Precise Control of Process Parameters for >23% Efficiency Perovskite Solar Cells in Ambient Air Using an Automated Device Acceleration Platform

Abstract

Achieving high-performance perovskite photovoltaics, especially in ambient air relies heavily on optimizing process parameters. However, traditional manual methods often struggle to effectively control the key variables. This inherent challenge requires a paradigm shift toward automated platforms capable of precise and reproducible experiments. Herein, we use a fully automated device acceleration platform (DAP) to optimize the process parameters for preparing full perovskite devices using a two-step sequential technique in ambient air. 10 process parameters that have the potential to significantly influence device performance are systematically optimized. Specifically, we delve into the impact of the dripping speed of organic ammonium halide, a parameter that is difficult to control manually, on both perovskite film and device performance. Through the targeted design of experiments, we reveal that the dripping speed significantly affects device performance primarily by adjusting the residual PbI2 content in the films. We find that moderate dripping speeds, e.g., 50 µL/s, contribute to top-performance devices. Conversely, too fast or too slow speeds result in devices with relatively poorer performance and lower reproducibility. The optimized parameter set enables us to establish a Standard Operation Procedure (SOP) for additive-free perovskite processing under ambient conditions, which yield devices with efficiencies surpassing 23%, satisfactory reproducibility, and state-of-the-art photo-thermal stability. This research underscores the importance of understanding the causality of process parameters in enhancing perovskite photovoltaic performance. Furthermore, our study highlights the pivotal role of automated platforms in discovering innovative workflows and accelerating the development of high-performing perovskite photovoltaic technologies.

Supplementary files

Article information

Article type
Paper
Submitted
30 Mar 2024
Accepted
27 Jun 2024
First published
28 Jun 2024
This article is Open Access
Creative Commons BY license

Energy Environ. Sci., 2024, Accepted Manuscript

Precise Control of Process Parameters for >23% Efficiency Perovskite Solar Cells in Ambient Air Using an Automated Device Acceleration Platform

J. Zhang, J. Wu, A. Barabash, T. Du, S. Qiu, V. M. Le Corre, Y. Zhao, K. Zhang, F. Schmitt, Z. Peng, J. Tian, C. Li, C. Liu, T. Heumueller, L. Lüer, J. Hauch and C. J. Brabec, Energy Environ. Sci., 2024, Accepted Manuscript , DOI: 10.1039/D4EE01432D

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