High-performance red light-emitting diodes from quasi-two-dimensional perovskite nanocrystals

J Jibin Zhang T Tianjun Liu Q Qichun Gu S Shuailing Lin J Jian Mao Z Zimu Wei M Meng Wang Y Yang Lu B Bo Cai Z Zher Ying Ooi (University of Cambridge , , ,) A Alessandro James Mirabelli L Linyuan Lian M Miguel Anaya Y Ying Liu M Mochen Jia X Xu Chen (Jinan University , , , ,) Y Yanbing Han X Xinzhen Ji Y Yiwei Zhang (State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica) Z Zhuangzhuang Ma X Xinping Zhang X Xin Zhou X Xinjian Li F Fanglong Yuan (Key Laboratory of Theoretical & Computational Photochemistry of Ministry of Education, College of Chemistry) L Lintao Hou C Chongxin Shan N Neil C. Greenham (University of Cambridge , , ,) S Samuel D. Stranks Z Zhifeng Shi

Abstract

Abstract Metal halide perovskite light-emitting diodes offer a promising platform for low-cost full-color displays, yet achieving high-performance pure-red emission remains challenging. Here, we report a crystallization regulation strategy for mixed bromide/iodide quasi-two-dimensional perovskites using a multifunctional molecule, 4-(trifluoromethyl)benzenesulfonamide, which simultaneously coordinates with organic spacer cations, Pb 2+ ions and halide ions. Moreover, the combination of large steric hindrance and ordered molecular assembly in the precursor solution plays a decisive role in directing the formation of nanocrystals, thereby suppressing defect formation, inhibiting halide ions migration, and enhancing exciton binding energy. The resulting light-emitting diodes exhibited pure-red emission at ~635 nm, delivering a peak external quantum efficiency of 30.2%, a maximum luminance exceeding 25,000 cd m -2 , and a half-lifetime of 8426 min. Achieving perovskite light-emitting diodes with performance comparable to that of quantum-dot or organic light-emitting diodes would mark a major milestone toward commercialization. This work would expand opportunities beyond conventional light-emitting diode technologies.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 07, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (29)

J

Jibin Zhang

T

Tianjun Liu

Q

Qichun Gu

S

Shuailing Lin

J

Jian Mao

Z

Zimu Wei

M

Meng Wang

Y

Yang Lu

B

Bo Cai

Z

Zher Ying Ooi

University of Cambridge , , ,

A

Alessandro James Mirabelli

L

Linyuan Lian

M

Miguel Anaya

Y

Ying Liu

M

Mochen Jia

X

Xu Chen

Jinan University , , , ,

Y

Yanbing Han

X

Xinzhen Ji

Y

Yiwei Zhang

State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica

Z

Zhuangzhuang Ma

X

Xinping Zhang

X

Xin Zhou

X

Xinjian Li

F

Fanglong Yuan

Key Laboratory of Theoretical & Computational Photochemistry of Ministry of Education, College of Chemistry

L

Lintao Hou

C

Chongxin Shan

N

Neil C. Greenham

University of Cambridge , , ,

S

Samuel D. Stranks

Z

Zhifeng Shi