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

Y Yoon Ho Lee (Davidson School of Chemical Engineering Purdue University West Lafayette IN 47907 USA) W Won‐June Lee (James Tarpo Jr. and Margaret Tarpo Department of Chemistry Purdue University West Lafayette Indiana 47907 USA) G Gang San Lee (Elmore Family School of Electrical and Computer Engineering Purdue University West Lafayette IN 47907 USA) J Jee Yung Park B Biao Yuan Y Yousang Won (School of Chemical and Biological Engineering, Institute of Chemical Processes Seoul National University Seoul Republic of Korea) J Jungho Mun (Elmore Family School of Electrical and Computer Engineering Purdue University West Lafayette IN 47907 USA) H Hanjun Yang S Sung‐Doo Baek (Davidson School of Chemical Engineering Purdue University West Lafayette IN 47907 USA) H HaEun Lee J Joon Hak Oh (School of Chemical and Biological Engineering Institute of Chemical Processes Seoul National University Seoul Republic of Korea) T Timothy J. Pennycook G Gwangwoo Kim (Department of Engineering Chemistry Chungbuk National University Cheongju 28644 Republic of Korea) J Jianguo Mei (James Tarpo Jr. and Margaret Tarpo Department of Chemistry, Purdue University, West Lafayette, IN, USA.) L Letian Dou

Abstract

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 6  A W −1 ) and specific‐detectivity (1.1 × 10 16 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.

Article Details

Volume / Issue Vol. 37, Issue 12
Published March 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (15)

Y

Yoon Ho Lee

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

W

Won‐June Lee

James Tarpo Jr. and Margaret Tarpo Department of Chemistry Purdue University West Lafayette Indiana 47907 USA

G

Gang San Lee

Elmore Family School of Electrical and Computer Engineering Purdue University West Lafayette IN 47907 USA

J

Jee Yung Park

B

Biao Yuan

Y

Yousang Won

School of Chemical and Biological Engineering, Institute of Chemical Processes Seoul National University Seoul Republic of Korea

J

Jungho Mun

Elmore Family School of Electrical and Computer Engineering Purdue University West Lafayette IN 47907 USA

H

Hanjun Yang

S

Sung‐Doo Baek

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

H

HaEun Lee

J

Joon Hak Oh

School of Chemical and Biological Engineering Institute of Chemical Processes Seoul National University Seoul Republic of Korea

T

Timothy J. Pennycook

G

Gwangwoo Kim

Department of Engineering Chemistry Chungbuk National University Cheongju 28644 Republic of Korea

J

Jianguo Mei

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

L

Letian Dou