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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Fluorescence behaviour of 2-, 3- and 4-amino-1,8-naphthalimides: effects of the substitution positions of the amino functionality on the photophysical properties
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Fluorescence behaviour of 2-, 3- and 4-amino-1,8-naphthalimides: effects of the substitution positions of the amino functionality on the photophysical properties

机译:2-,3-和4-氨基-1,8-萘硫代亚胺的荧光行为:氨基官能度取代位置对光学性质的影响

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摘要

The absorption and fluorescence spectra of a series of 1,8-naphthalimide derivatives incorporating the amino functionality at the 2-, 3- and 4-positions of the naphthalene ring ( 2APNI , 3APNI and 4APNI , respectively) were systematically investigated in various solvents and in the solid state. The fluorescence spectra of 2APNI were insensitive to solvent polarity and intermolecular hydrogen-bonding even in a protic medium such as methanol. Thus, 2APNI displayed blue fluorescence with a moderate fluorescence quantum yield ( λ ~(F) _(max) = 420–445 nm, Φ _(F) 0.2–0.3) in the solvents investigated. In contrast, the fluorescence spectra of 3APNI and 4APNI were strongly solvent dependent showing positive solvatofluorochromism with large Stokes shifts. Upon increasing the solvent polarity, the fluorescence colours changed from blue in hexane ( λ ~(F) _(max) = 429 nm) to orange-yellow in methanol ( λ ~(F) _(max) = 564 nm) for 3APNI , and from blue in hexane ( λ ~(F) _(max) = 460 nm) to yellow in methanol ( λ ~(F) _(max) = 538 nm) for 4APNI . The fluorescence quantum yields of 3APNI and 4APNI decreased with increasing solvent polarity. In the solid state, APNI s displayed red-shifted fluorescence emission compared to that in solution ( λ ~(F) _(max) = 541 nm for 2APNI , 575 nm for 3APNI , and 561 nm for 4APNI ) and the fluorescence quantum yields in the solid state were lower than those in solution.
机译:在各种溶剂中系统地研究了包含在萘环(2apni,3apni和4apnni)的2-,3-和4-位的氨基官能度的一系列1,8-萘二烷基酰亚胺衍生物的吸收和荧光光谱。在固态。即使在诸如甲醇的质子介质中,2APNI的荧光光谱也对溶剂极性和分子间氢键不敏感。因此,在研究的溶剂中,2APNI显示具有中等荧光量子产率(λ〜(f)_(max)= 420-445nm,φ_(f)0.2-0.3)的蓝荧光。相反,3apni和4apni的荧光光谱是强烈的溶剂,依赖于大型斯托克斯偏移的阳性溶解荧光铬。在增加溶剂极性时,荧光颜色从己烷(λ〜(f)_(max)= 429nm)的蓝色变为3apni的橙黄(λ〜(f)_(max)= 564nm) ,并从己烷中的蓝色(λ〜(f)_(max)= 460nm)到甲醇中的黄色(λ〜(f)_(max)= 538nm),用于4apni。随着溶剂极性的增加,3APNI和4APNI的荧光量子产率降低。在固态中,与溶液中的溶液(λ〜(f)_(max)= 541nm为2apni,575nm,4apni的575nm,荧光量子产量(λ〜(f)_(max)= 541nm)和561nm)和561nm的= 541nm)和荧光量子产生在固态低于溶液中的固态。

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