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加速卤化物钙钛矿的优化:自动化的两个蓝图。

Accelerating optimization of halide perovskites: two blueprints for automation.

作者信息

Can Hilal Aybike, Jacobs Daniel Anthony, Fürst Nicolas, Ballif Christophe, Wolff Christian Michael

机构信息

École Polytechnique Fédérale de Lausanne (EPFL), Institute of Electrical and Microengineering (IEM), Photovoltaics and Thin-Film Electronics Laboratory (PV-Lab) Rue de la Maladière 71b Neuchâtel 2000 Switzerland

Centre d'Electronique et de Microtechnique (CSEM), Sustainable Energy Center Rue Jaquet-Droz 1 Neuchâtel 2000 Switzerland.

出版信息

Digit Discov. 2025 Aug 25. doi: 10.1039/d5dd00110b.

Abstract

The fine-tuning of halide perovskite materials for both performance and stability calls for innovative tools that streamline high-throughput experimentation. Here, we present two complementary systems designed to accelerate the development of solution-processed thin-film semiconductors. HITSTA (High-Throughput Stability Testing Apparatus) is a robust, cost-effective platform for optical characterization and accelerated aging, built around a repurposed 3D printer. It accommodates up to 49 thin-film samples, subjecting them to temperatures up to 110 °C and light intensities of 2.2 suns while continuously monitoring their absorptance and photoluminescence. ROSIE (Robotic Operating System for Ink Engineering) is a liquid-handling robot constructed from a hobbyist robotic arm and a syringe pump, enabling precise and automated ink formulation. We detail the design and operation of both systems, providing guidelines for their replication. To demonstrate their capabilities, we present a case study in which ROSIE and HITSTA are used to investigate the aging of mixed-cation, mixed-halide inorganic perovskites. Together, these systems form a powerful toolkit for accelerating the optimization of solution-processable thin-films high-throughput experimentation.

摘要

为了实现卤化物钙钛矿材料在性能和稳定性方面的微调,需要创新工具来简化高通量实验。在此,我们展示了两个互补系统,旨在加速溶液处理薄膜半导体的开发。HITSTA(高通量稳定性测试设备)是一个强大且经济高效的光学表征和加速老化平台,围绕一台改装的3D打印机构建。它可容纳多达49个薄膜样品,使其承受高达110°C的温度和2.2倍太阳光强度的光照,同时持续监测其吸收率和光致发光。ROSIE(用于油墨工程的机器人操作系统)是一个由业余爱好者的机械臂和注射泵构建的液体处理机器人,能够实现精确且自动化的油墨配方调配。我们详细介绍了这两个系统的设计和操作,并提供了复制它们的指导方针。为了展示它们的能力,我们呈现了一个案例研究,其中ROSIE和HITSTA用于研究混合阳离子、混合卤化物无机钙钛矿的老化。总之,这些系统构成了一个强大的工具包,用于通过高通量实验加速可溶液处理薄膜的优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fee0/12381630/f8b991fbbd81/d5dd00110b-f1.jpg

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