Hei Xiuze, Teat Simon J, Li Mingxing, Bonite Megan, Li Jing
Department of Chemistry and Chemical Biology, Rutgers University, Piscataway, New Jersey 08854, United States.
Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.
Inorg Chem. 2023 Feb 27;62(8):3660-3668. doi: 10.1021/acs.inorgchem.2c04547. Epub 2023 Feb 13.
Using cationic ligands containing both aromatic and aliphatic coordination sites, we have synthesized and structurally characterized five new CuX-based hybrid materials consisting of anionic inorganic motifs that also form coordinate bonds with the cationic organic ligands. As a result of the unique bonding nature at the inorganic/organic interfaces, these compounds demonstrate strong resistance toward heat and can be readily processed in solution. They emit light in the visible region ranging from cyan to yellow color, with the highest photoluminescence quantum yield (PLQY) reaching 71%. The influence of the different coordination modes of the ligands on their emission behavior was investigated employing both experimental and theoretical methods, which have provided insight in understanding structure-property relationships in these materials and guidelines for tuning and enhancing their chemical and physical properties.
通过使用含有芳香族和脂肪族配位位点的阳离子配体,我们合成并通过结构表征了五种新型的基于CuX的杂化材料,这些材料由阴离子无机基序组成,它们也与阳离子有机配体形成配位键。由于无机/有机界面处独特的键合性质,这些化合物表现出很强的耐热性,并且可以很容易地在溶液中进行加工。它们在从青色到黄色的可见光区域发光,最高光致发光量子产率(PLQY)达到71%。采用实验和理论方法研究了配体不同配位模式对其发光行为的影响,这为理解这些材料的结构-性质关系以及调整和增强其化学和物理性质提供了指导。