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首页> 外文期刊>Russian Chemical Bulletin >Nitrogen-containing analogues of boron difluoride benzoylacetonate: synthesis, structure, luminescence, and quantum chemical modeling
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Nitrogen-containing analogues of boron difluoride benzoylacetonate: synthesis, structure, luminescence, and quantum chemical modeling

机译:二氟化硼苯甲酰丙酮的含氮类似物:合成,结构,发光和量子化学建模

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摘要

Nitrogen-containing analogues of boron difluoride benzoylacetonate (1), i.e., boron difluoride ketoiminates (boron difluoride 3-amino-1-phenyl-2-buten-1-onate (2) and 3-methylamino-1-phenyl-2-buten-1-onate (3)), were taken as examples to study the influence of a substituent (H, Me) at the nitrogen atom on structure and spectral-luminescent properties. The replacement of the oxygen atom with the nitrogen atom in compound 1 led to a bathochromic shift of the monomeric luminescence maximum. Quantum chemical modeling of absorption spectra for compound 2 was carried out. In contrast to compounds 1 and 3, crystals of compound 2 are characterized by the formation of J-aggregates and excimers on their basis, which leads to a bathochromic shift of the luminescence spectrum and an increase in the luminescence intensity.
机译:二氟化硼苯甲酰基丙酮酸酯(1)的含氮类似物,即二氟化硼酮亚酸酯(二氟化硼3-氨基-1-苯基-2-丁烯-1-酸酯(2)和3-甲基氨基-1-苯基-2-丁烯以-1-onate(3))为例,研究了氮原子上的取代基(H,Me)对结构和光谱发光性质的影响。化合物1中的氧原子被氮原子取代导致单体发光最大值的红移。对化合物2的吸收光谱进行了量子化学建模。与化合物1和3相反,化合物2的晶体的特征在于基于它们的J-聚集体和准分子的形成,这导致发光光谱的红移和发光强度的增加。

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