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通过超声喷雾合成制备的大规模二维钙钛矿纳米晶体光电探测器阵列

Large-Scale 2D Perovskite Nanocrystals Photodetector Array via Ultrasonic Spray Synthesis.

作者信息

Lee Yoon Ho, Lee Won-June, Lee Gang San, Park Jee Yung, Yuan Biao, Won Yousang, Mun Jungho, Yang Hanjun, Baek Sung-Doo, Lee Haeun, Oh Joon Hak, Pennycook Timothy J, Kim Gwangwoo, Mei Jianguo, Dou Letian

机构信息

Davidson School of Chemical Engineering, Purdue University, West Lafayette, IN, 47907, USA.

James Tarpo Jr. and Magaret Tarpo Department of Chemistry, Purdue University, West Lafayette, IN, 47907, USA.

出版信息

Adv Mater. 2025 Mar;37(12):e2417761. doi: 10.1002/adma.202417761. Epub 2025 Feb 19.

Abstract

2D perovskite (PVSK) single crystals have received significant attention due to their unique optical and optoelectronic properties. However, current synthesis methods face limitations, particularly in large-area fabrication, which remain critical barriers to practical applications. In this study, the synthesis of red/green/purple-blue-colored 2D PVSK nanocrystals over a large area (4-inch wafer) and the fabrication of high-performance photodetector arrays are presented via a facile yet efficient spray-coating approach with a liquid-bridge transport effect. The photodetector array achieves 100% working yield, high photo-responsivity (1.5 × 10 A W) and specific-detectivity (1.1 × 10 Jones) with competitive photomapping characteristics. An intelligent vision system for automatic shape recognition is further demonstrated with a recognition rate exceeding 90%. This study provides significant advances in the scalable synthesis of nanoscale 2D PVSK crystals, their integration into large-area optoelectronic devices, and their potential use in artificial-intelligence systems.

摘要

二维钙钛矿(PVSK)单晶因其独特的光学和光电特性而备受关注。然而,目前的合成方法存在局限性,特别是在大面积制备方面,这仍然是实际应用的关键障碍。在本研究中,通过一种简便而高效的具有液桥传输效应的喷涂方法,实现了大面积(4英寸晶圆)上红色/绿色/紫蓝色二维PVSK纳米晶体的合成以及高性能光电探测器阵列的制备。该光电探测器阵列实现了100%的工作良品率、高光响应率(1.5×10 A/W)和比探测率(1.1×10 Jones),并具有具有竞争力的光映射特性。进一步展示了一种用于自动形状识别的智能视觉系统,其识别率超过90%。本研究在纳米级二维PVSK晶体的可扩展合成、将其集成到大面积光电器件以及它们在人工智能系统中的潜在应用方面取得了重大进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9195/11938026/67b962b5a299/ADMA-37-2417761-g005.jpg

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