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Low-temperature doctor blade coating technology for prepative high-efficiency perovskite LED film

Abstract: 本文介绍了低温刮刀涂层技术在制备高效钙钛矿LED薄膜方面的应用。随着对低成本平板照明的需求增加,制备大面积、高均匀性的钙钛矿薄膜成为关键。本文通过在50°C低温下使用稀释的有机铵过量前驱体和刮刀涂布技术,成功制备了具有极低粗糙度(1 nm)的大面积钙钛矿薄膜。优化的涂布过程和氮气刀的使用显著改善了薄膜的形貌,并使制备的钙钛矿LED薄膜的外量子效率(EQE)达到16.1%,优于其他制备方法。研究结果表明,低温刮刀涂层技术不仅提高了薄膜的均匀性和性能,还具备高吞吐量和低成本的优势,为大规模高效LED生产提供了新的解决方案,推动了平板照明和显示技术的发展。

introduction

As demand for low-cost flat-panel lighting continues to grow, mass production technology is critical for manufacturing large-area light-emitting diodes (LEDs). However, existing manufacturing methods still have challenges in controlling film uniformity, which limits the development of organic small molecule (OLED), quantum dot (QLED), polymer (PLED), and new hybrid perovskite (PELED) LEDs. application. In this article, we introduce the application of low-temperature drawdown blade coating technology in the preparation of methylammonium lead iodide (MAPbI3) perovskite thin films, using a sol-gel engineering approach to overcome the challenges in thin film preparation.

method

By using a dilute, organic ammonium-excess precursor, combined with a drawdown blade coating technique, the efficient preparation of perovskite films was achieved at a low temperature of 50 °C . First, select the MAPbI3 precursor and control its concentration in the range of 0.02 to 0.8 M. Then, during the blade coating process, the film morphology is ensured to be optimized by optimizing parameters such as coating speed, temperature, and nitrogen (N2) knife pressure. At the same time, a nitrogen (N2) knife was added to accelerate the evaporation of the solvent and further improve the morphology of the film. Through these methods, we achieved precise control of perovskite films, resulting in large-area films with extremely low roughness.

Low-temperature drawdown blade coating technology is used to prepare high-efficiency perovskite LED films Figure 1

result

The prepared perovskite film has extremely low roughness reaching 1 nm over a large area (54 cm2). At the same time, the performance of the PeLED prepared by blade coating was evaluated, and it was found that its external quantum efficiency (EQE) reached 16.1%, which was higher than the LED performance under other preparation methods. This demonstrates the potential application of drawdown blade coating technology in preparing perovskite LEDs.

discuss

By optimizing the blade coating process, an efficient perovskite LED film was prepared. This low-temperature blade coating technology not only achieves film uniformity and precise control, but also has the advantages of high throughput and low cost, providing a new solution for mass production of high-efficiency LEDs. The success of this work highlights the potential application of blade coating technology in LED manufacturing and provides new possibilities for the development of flat-panel lighting and displays.

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