Alty Isaac G, Cheek Douglas W, Chen Tao, Smith David B, Walhout Emma Q, Abelt Christopher J
Department of Chemistry, College of William and Mary , Williamsburg, Virginia 23185, United States.
J Phys Chem A. 2016 May 26;120(20):3518-23. doi: 10.1021/acs.jpca.6b02398. Epub 2016 May 5.
The effects of intramolecular hydrogen-bonding on the fluorescence behavior of three derivatives of 6-propionyl-2-dimethylaminonaphthalene are reported. The H-bonding effects are revealed through comparisons with corresponding reference compounds in which the H-bond-donating hydroxyl groups are replaced with methoxy groups. In toluene, intramolecular H bonding gives rise to a dramatic increase in the fluorescence intensity but only a slight red shift in the position. This behavior is attributed to decreased efficiency in intersystem crossing due to an increase in the energy of the n → π* triplet state. The intramolecular H bond does not induce quenching in acetonitrile; however, in the presence of a very small concentration of methanol, a dual intramolecular, intermolecular H-bonding arrangement does lead to partial quenching as revealed by preferential solvation studies.
报道了分子内氢键对6-丙酰基-2-二甲基氨基萘三种衍生物荧光行为的影响。通过与相应的参考化合物进行比较揭示了氢键效应,在这些参考化合物中,供氢的羟基被甲氧基取代。在甲苯中,分子内氢键导致荧光强度急剧增加,但位置仅略有红移。这种行为归因于n→π*三重态能量增加导致系间窜越效率降低。分子内氢键在乙腈中不会引起猝灭;然而,在存在极少量甲醇的情况下,如优先溶剂化研究所揭示的,双分子内、分子间氢键排列确实会导致部分猝灭。