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Structural regulation and optical behavior of zero-dimensional Cu(Ⅰ)-based organometallic halides under pressure

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摘要 Low-dimensional hybrid metal halides exhibit broadband emission and high photoluminescence quantum yield(PLQY), making them promising candidates for the next-generation luminescent materials in lighting applications. Here,the emission intensity of(C_(12)H_(24)O_(6))_(2)Na_(2)(H_(2)O)_(3)Cu_(4)I_(6) was strengthened between 9.3 GPa and 17.2 GPa, accompanied by the redshift of emission wavelength. The photoluminescence(PL) of Cu(Ⅰ)-based organometallic halides originates from multiple emission states, which are a metal-to-ligand charge transfer or a halide-to-ligand charge transfer(MLCT/HLCT)excited state and a cluster-centered(CC) excited state. MLCT/HLCT-related emission wavelength redshifts while CCrelated emission wavelength remains unchanged, indicating that the rearrangement of different emission states plays a critical role in the changes of luminescence wavelength. This study not only deepens the understanding of the influence of high pressure on(C_(12)H_(24)O_(6))_(2)Na_(2)(H_(2)O)_(3)Cu_(4)I_(6), but also provides valuable insights into the structure–property relationship of zero-dimensional Cu(Ⅰ)-based organometallic halides.
作者 Runnan Ye Jingtian Wang Jiayi Yang Xuchen Wang Junce Lei Wenya Zhao Yufan Meng Guanjun Xiao Bo Zou 叶润楠;王敬天;杨佳毅;王旭晨;雷钧策;赵文雅;孟雨凡;肖冠军;邹勃
出处 《Chinese Physics B》 2025年第6期54-58,共5页 中国物理B(英文版)
基金 Project supported by the National Key R&D Program of China (Grant No. 2023YFA1406200) the National Natural Science Foundation of China (Grant Nos. 12174144 and 12474009) the Graduate Innovation Fund of Jilin University (Grant No. 2024CX201)。
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