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◆ Advanced materials (Deerfield Beach, Fla.)2026-09-23

Stepped-Dimensional 2D/3D Tin-Based Perovskites for High-Efficiency Light-Emitting Diodes.

Pengpeng Teng, Zheng Jiang, Yuhan Zhou, Yangyu Liu, Wenxiao Niu, Chunping Pu, Quan Liu, Xianrong Li, Fan Pu, Yiran Zhang, Qipan Yu, Xingjiao Feng, Dongxu Jin, Yuxuan Wei, Wenhao Zheng, Zhibo Yan, Haifeng Zhao, Sai Bai, Yatao Zou, Weidong Xu, Wing Chung Tsoi, Tao Yu, Jie Yang, Xiaodong Shen, Chunxiong Bao

原始摘要(英文原文)· Original abstract
Tin (Sn)-based perovskite near-infrared (NIR) light-emitting diodes (LEDs) show great potential for applications in night vision, biomedical sensing, and optical communications. However, their performance remains limited by uncontrolled crystallization and the facile oxidation of Sn2+. Here, we demonstrate a versatile buried-interlayer strategy to effectively regulate the crystallization and suppress the Sn2+ oxidation by constructing a two-dimensional/three-dimensional (2D/3D) heterodimensional structure. We reveal that strong interactions between the buried ligand layer, the perovskite precursor, and the underlying hole-transport layer promote rapid nucleation, retard crystal growth, and induce a vertical dimensional gradient, leading to reduced defect density and enhanced radiative recombination. As a result, NIR Sn-based perovskite LEDs achieve a record external quantum efficiency of 13.7% with a radiance of 103 W sr-1 m-2. Furthermore, the buried-interlayer strategy enables dual-functional Sn-based perovskite devices capable of both efficient light emission and photodetection, which are successfully integrated into a compact heart-pulse monitoring system. Our work suggests a synergistic crystallization and dimensional-regulation strategy for achieving high-performance Sn-based perovskite optoelectronic devices.
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Stepped-Dimensional 2D/3D Tin-Based Perovskites for High-Efficiency Light-Emitting Diodes. — 科研速览 Science Skim