Yang Wei, Dang Peipei, Liu Dongjie, Wang Yingsheng, Tian Long, Wei Yi, Lian Hongzhou, Li Guogang, Lin Jun
State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, China.
School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei, 230026, China.
Angew Chem Int Ed Engl. 2025 Sep 15;64(38):e202508487. doi: 10.1002/anie.202508487. Epub 2025 Aug 4.
Organic-inorganic metal halides (OIMHs) with multi-color switchable luminescence have raised pervasive attention in the field of sensing, optoelectronics, anti-counterfeiting, information encryption and storage. However, the complexity of soft lattice structures makes it difficult to establish design rules for realizing the luminescence regulation, which greatly hinders their practical applications. Herein, a series of 0D OIMHs are designed, including PASbCl, PAInCl, PMAInCl, PEAInCl·HO and PPAInCl. Tunable self-trapped excitons (STEs) emission from 606 to 678 nm originated from [SbCl] are realized in these 0D structures by Sb doping at room temperature. The correlations among structural distortion, bandgap, emission position, and quantum yield are investigated in these 0D Sb-doped OIMHs. The greater distortion of local inorganic polyhedron induces a relative red-shift emission, while the increased separation distance between local inorganic polyhedron reduces non-radiative transitions, therefore enhancing quantum yield. Moreover, multi-emission centers are constructed in Sb/Bi-doped PMAInCl, achieving green/red and blue/green/red tunable multi-color switching luminescence under the regulation of excitation wavelength and temperature. Based on the multi-color luminescence response characteristics, potential application demonstrations in optical anti-counterfeiting and information encryption are designed. This suggests the application potential of constructing multi-color switchable luminescence in OIMHs using ns ions, providing a new design perspective for low-dimensional OIMHs.
具有多色可切换发光特性的有机-无机金属卤化物(OIMHs)在传感、光电子学、防伪、信息加密和存储等领域引起了广泛关注。然而,软晶格结构的复杂性使得难以建立实现发光调控的设计规则,这极大地阻碍了它们的实际应用。在此,设计了一系列零维OIMHs,包括PASbCl、PAInCl、PMAInCl、PEAInCl·H₂O和PPAInCl。通过在室温下进行Sb掺杂,在这些零维结构中实现了源自[SbCl]的606至678 nm可调谐自陷激子(STE)发射。研究了这些零维Sb掺杂OIMHs中结构畸变、带隙、发射位置和量子产率之间的相关性。局部无机多面体的更大畸变会导致相对红移发射,而局部无机多面体之间分离距离的增加会减少非辐射跃迁,从而提高量子产率。此外,在Sb/Bi掺杂的PMAInCl中构建了多发射中心,在激发波长和温度的调控下实现了绿色/红色以及蓝色/绿色/红色可调谐多色切换发光。基于多色发光响应特性,设计了光学防伪和信息加密方面的潜在应用演示。这表明利用ns离子在OIMHs中构建多色可切换发光的应用潜力,为低维OIMHs提供了新的设计视角。