首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Excited state intramolecular proton transfer in 2-(2 '-arylsulfonamidophenyl)benzimidazole derivatives: Insights into the origin of donor substituent-induced emission energy shifts
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Excited state intramolecular proton transfer in 2-(2 '-arylsulfonamidophenyl)benzimidazole derivatives: Insights into the origin of donor substituent-induced emission energy shifts

机译:2-(2'-芳基磺酰胺基苯基)苯并咪唑衍生物中的兴奋态分子内质子转移:对供体取代基引起的发射能位移的起源的认识

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摘要

Donor-substituted 2-(2'-arylsulfonamidophenyl)benzimidazoles undergo efficient excited-state intramolecular proton transfer (ESIPT) upon photoexcitation. The tautomer emission energy depends strongly on the substituent attachment position on the fluorophore pi-system. While substitution with a donor group in the para-position relative to the sulfonamide moiety yields an emission energy that is red-shifted relative to the unsubstituted fluorophore, fluorescence of the meta-substituted derivative appears blue-shifted. To elucidate the origin of the surprisingly divergent emission shifts, we performed detailed photophysical and quantum chemical studies with a series of methoxy- and pyrrole-substituted derivatives. The nature and contribution of solvent-solute interactions on the emission properties were analyzed on the basis of solvatochromic shift data using Onsager's reaction field model, Reichardt's empirical solvent polarity scale E-T(30), as well as Kamlet-Abboud-Taft's empirical solvent index. The studies revealed that all ESIPT tautomers emit from a moderately polarized excited-state whose dipole moment is not strongly influenced by the donor-attachment position. Furthermore, the negative solvatochromic shift behavior was most pronounced in protic solvents presumably due to specific hydrogen-bonding interactions. The extrapolated gas-phase emission energies correlated qualitatively well with the trends in Stokes shifts, suggesting that solute-solvent interactions do not play a significant role in explaining the divergent emission energy shifts. Detailed quantum chemical calculations not only confirmed the moderately polarized nature of the ESIPT tautomers but also provided a rational for the observed emission shifts based on the differential change in the HOMO and LUMO energies. The results gained from this study should provide guidelines for tuning the emission properties of this class of ESIPT fluorophores with potential applications in analytical chemistry, biochemistry, or materials science.
机译:供体取代的2-(2'-芳基磺酰胺基苯基)苯并咪唑在光激发后会发生有效的激发态分子内质子转移(ESIPT)。互变异构体的发射能量在很大程度上取决于荧光团pi系统上的取代基连接位置。尽管在相对于磺酰胺部分的对位被供体基团取代产生的发射能量相对于未取代的荧光团是红移的,但是间位取代的衍生物的荧光似乎是蓝移的。为了阐明令人惊讶的发散位移的起源,我们使用一系列甲氧基和吡咯取代的衍生物进行了详细的光物理和量子化学研究。使用Onsager反应场模型,Reichardt的经验溶剂极性标度E-T(30)以及Kamlet-Abboud-Taft的经验溶剂指数,根据溶剂化变色数据分析了溶剂-溶质相互作用对发射性质的性质和贡献。研究表明,所有ESIPT互变异构体均从中等极化激发态发射,该激发态的偶极矩不受供体附着位置的强烈影响。此外,负质溶变色行为在质子溶剂中最明显,可能是由于特定的氢键相互作用。外推的气相发射能量与斯托克斯位移的趋势在质量上具有良好的相关性,这表明溶质与溶剂之间的相互作用在解释发散的发射能量位移方面没有起到重要作用。详细的量子化学计算不仅证实了ESIPT互变异构体的中等极化性质,而且为根据HOMO和LUMO能量的差异变化观察到的发射位移提供了合理的理由。这项研究获得的结果应为调整此类ESIPT荧光团的发射特性提供指导,并有望在分析化学,生物化学或材料科学中应用。

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