首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Solvent- and Temperature-Dependent Conformational Changes between Huckel Antiaromatic and Mobius Aromatic Species in meso-Trifluoromethyl Substituted [28]Hexaphyrins
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Solvent- and Temperature-Dependent Conformational Changes between Huckel Antiaromatic and Mobius Aromatic Species in meso-Trifluoromethyl Substituted [28]Hexaphyrins

机译:Huckel抗芳香族和Mobius芳香族物种在中三氟甲基取代的[28]六氢卟啉中的溶剂和温度依赖性构象变化

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We investigated the photophysical properties of figure- eight-like meso-hexakis(trifluoromethyl) [26]- and [28]hexaphyrins-(1.1.1.1.1.1) denoted as TFM26H and TFM28H, respectively, using steady-state and time-resolved spectroscopy along with theoretical calculations to explore their electronic and magnetic natures depending on their molecular aromaticity. TFM26H exhibited a well-resolved absorption feature and intense fluorescence, both of which were neither solvent- nor temperature-dependent. These optical properties were in agreement with its Huckel's [4n + 2] aromaticity as observed in typical aromatic porphyrinoids. The S1-state lifetime of ~50 ps for TFM26H in solution was shorter than those in planar aromatic hexaphyrins (>100 ps) presumably due to nonplanar figure-eight geometry of TFM26H. However, TFM28H exhibited remarkable changes in solvent- and temperature-dependent absorption spectra as well as excited-state lifetimes indicating that a dynamic equilibrium occurs between the two conformational species. With the help of quantum mechanical geometry optimization and vertical excitation energy calculations, we found that the figure-eight double-sided conformer observed in the solid-state and single-sided distorted one could be the best candidates for the two conformers, which should be Huckel antiaromatic and Mobius aromatic species, respectively, based on their optical characteristics, molecular orbital structures, and excited-state lifetimes. Conformational dynamics between these two conformers of TFM28H was scrutinized in detail by temperature-dependent ~1H NMR spectra in various solvents, which showed that the conformational equilibrium was quite sensitive to solvents and that a conformational change faster than the NMR time-scale occurs even at 173 K.
机译:我们使用稳态和时间分辨方法研究了分别表示为TFM26H和TFM28H的8型中位六六(三氟甲基)[26]-和[28]六卟啉-(1.1.1.1.1.1)的光物理性质光谱学和理论计算,以根据分子的芳香性探索其电子和磁性性质。 TFM26H表现出良好的吸收特征和强烈的荧光,两者都不依赖于溶剂,也不依赖于温度。这些光学性质与其在典型的芳香卟啉类化合物中观察到的Huckel [4n + 2]芳香性相符。溶液中TFM26H的S1状态寿命约为50 ps,比平面芳族六卟啉(> 100 ps)的S1状态寿命短,这可能是由于TFM26H的非平面八字形所致。但是,TFM28H在取决于溶剂和温度的吸收光谱以及激发态寿命方面显示出显着变化,表明在两种构象物质之间发生了动态平衡。借助量子力学几何优化和垂直激发能计算,我们发现在固态和单面畸变的一个中观察到的八字形双面构象可能是这两个构象的最佳候选者。 Huckel抗芳香族和Mobius芳香族分别基于它们的光学特性,分子轨道结构和激发态寿命。通过在各种溶剂中依赖于温度的〜1H NMR光谱详细研究了TFM28H的这两个构象异构体之间的构象动力学,结果表明,构象平衡对溶剂非常敏感,即使在60℃时,构象变化也比NMR时标更快173K。

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