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具有氢键的零维铟杂化物中的白光发射

White Light Emission in Zero-Dimensional Indium Hybrid with Hydrogen Bond.

作者信息

Lin Jiawei, Sun Niu, Yao Ruonan, Liu Kunjie, Guo Zhongnan, Zhao Jing, Liu Quanlin, Yuan Wenxia

机构信息

Department of Chemistry, School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing, 100083, China.

Department of Chemistry, Southern University of Science and Technology, Shenzhen, Guangdong 518055, China.

出版信息

Inorg Chem. 2024 Oct 21;63(42):19819-19826. doi: 10.1021/acs.inorgchem.4c03131. Epub 2024 Oct 9.

Abstract

Low-dimensional organic-inorganic metal halides (OIMHs) have been explored as single-component white light emitters for applications in solid-state lighting. Herein, we report a zero-dimensional (0D) In-based OIMH (TMPDA)[InCl(HO)] (TMPDA = -tetramethyl-1,4-phenylenediamine), which crystallizes in the noncentrosymmetric 222 space group and contains hydrogen bonds between the adjacent [InCl(HO)] octahedra in structure. It exhibits a large optical band gap (4.10 eV) and dual-band emission under UV light. Spectroscopic analysis and theoretical calculation indicate that the high (404 nm)- and low (513 nm)-energy emissions are attributed to the bound excitons in organic ligands and self-trapped excitons in [InCl(HO)] units, respectively. It is found that Sb doping in this 0D hybrid provides additional orange (590 nm) emission assigned to the P → S triplet radiative recombination. By adjusting the doping level, the emission color can be turned from turquoise to orange, and interestingly, a single-component white-light emission is realized by balancing the high-energy emission from organic ligand, the turquoise emission from [InCl(HO)], and the orange one from [SbCl(HO)]. This work not only provides a new OIMH showing the single-component white light emission but also demonstrates the potential of In-based hybrids with hydrogen bonds for solid-state luminescence.

摘要

低维有机-无机金属卤化物(OIMHs)已被探索用作固态照明应用中的单组分白光发射体。在此,我们报道了一种零维(0D)铟基OIMH(TMPDA)[InCl(HO)](TMPDA = -四甲基-1,4-苯二胺),它结晶于非中心对称的222空间群,且结构中相邻的[InCl(HO)]八面体之间存在氢键。它在紫外光下表现出较大的光学带隙(4.10 eV)和双波段发射。光谱分析和理论计算表明,高能量(404 nm)和低能量(513 nm)发射分别归因于有机配体中的束缚激子和[InCl(HO)]单元中的自陷激子。研究发现,在这种0D杂化物中掺杂锑会产生额外的橙色(590 nm)发射,这归因于P→S三线态辐射复合。通过调整掺杂水平,发射颜色可以从蓝绿色变为橙色,有趣的是,通过平衡来自有机配体的高能量发射、来自[InCl(HO)]的蓝绿色发射和来自[SbCl(HO)]的橙色发射,实现了单组分白光发射。这项工作不仅提供了一种显示单组分白光发射的新型OIMH,还展示了具有氢键的铟基杂化物在固态发光方面具有的潜力。

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