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氟取代基位置对铂β-二酮配合物微晶的晶体结构和光致发光的影响。

Effect of the Fluoro-Substituent Position on the Crystal Structure and Photoluminescence of Microcrystals of Platinum β-Diketonate Complexes.

作者信息

Zeng Wei, Sun Meng-Jia, Gong Zhong-Liang, Shao Jiang-Yang, Zhong Yu-Wu, Yao Jiannian

机构信息

Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Photochemistry, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.

School of Chemical Sciences, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

Inorg Chem. 2020 Aug 17;59(16):11316-11328. doi: 10.1021/acs.inorgchem.0c00887. Epub 2020 Jul 28.

DOI:10.1021/acs.inorgchem.0c00887
PMID:32799462
Abstract

Molecular packing has an important effect on the photophysical properties of crystalline materials. We demonstrate in this work the modulation of molecular packing and emission properties of microcrystals by minor molecular structural variations. Four platinum β-diketonate complexes, with two fluoro substituents () or one fluoro atom substituted on different positions of the auxiliary phenylpyridine ligand (-) have been synthesized. These complexes were used to prepare one-dimensional microcrystals with well-defined shapes and uniform sizes. Although - display similar emission spectra in the solution state, the corresponding microcrystals display different emission colors from green to yellow and orange. In addition, different temperature-responsive (80-298 K) emission spectral changes have been observed from these microcrystals, including the intensity variation of the locally excited (LE) emission without obvious wavelength shifts, competition between the LE and metal-metal-to-ligand charge-transfer emissions, and the sole wavelength shift of the π-π excimer emissions. These differences in emission properties are rationalized by different molecular packings of these materials, as revealed by single-crystal X-ray analyses.

摘要

分子堆积对晶体材料的光物理性质有重要影响。在本工作中,我们证明了微小的分子结构变化对微晶分子堆积和发光性质的调制作用。合成了四种铂β - 二酮配合物,在辅助苯基吡啶配体的不同位置上有两个氟取代基()或一个氟原子被取代(-)。这些配合物被用于制备形状明确、尺寸均匀的一维微晶。尽管 - 在溶液状态下显示出相似的发射光谱,但相应的微晶却呈现出从绿色到黄色和橙色的不同发射颜色。此外,从这些微晶中观察到了不同的温度响应(80 - 298 K)发射光谱变化,包括局部激发(LE)发射强度变化而无明显波长偏移、LE发射与金属 - 金属到配体电荷转移发射之间的竞争,以及π - π准分子发射的单一波长偏移。如单晶X射线分析所示,这些材料不同的分子堆积解释了发射性质的这些差异。

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