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Cluster-Centered Excited-State-Induced Bright Low-Energy Emissive Hybrid Copper Iodide Constructing Stable White LEDs.

Jing-Li QiJiajing WuShu-Fang YanJun-Jie XuWenlong LiuSheng-Ping Guo
Published in: Inorganic chemistry (2023)
Herein, we successfully synthesized a stable copper iodide hybrid with a 0D structure, (C 20 H 20 P) 2 Cu 2 I 4 , in which [Cu 2 I 4 ] 2- dimers with a short Cu-Cu distance (2.64 Å) are isolated and surrounded by [C 20 H 20 P] + organic cations. Bright broadband yellow emission (576 nm) featuring a wide excitation range from 240 to 450 nm was achieved, along with a large Stokes shift (211 nm), long-lived lifetime (1.99 μs), and zero self-absorption. The results combined with crystal structure, spectroscopy analysis, and theoretical studies reveal that a cluster-centered excited state is responsible for this yellow emission. Importantly, the structure of (C 20 H 20 P) 2 Cu 2 I 4 remains unchanged even after soaking in water for 30 days or heating at 80 °C for 240 h due to the intermolecular interaction. Furthermore, a stable white LED showing a naturally correlated color temperature (CCT) of 6573 K and CIE color coordinate of (0.31, 0.37) was also demonstrated. This work demonstrates efficient light emitters based on lead-free and stable metal halides for lighting, providing an important reference for the development of stable, high-performance metal halide phosphors.
Keyphrases
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