Reddy T Sheshashena, Rameshwar N, Bhudevi B, Reddy A Ram
Department of Chemistry, University College of Science, Osmania University Campus, Osmania University, Hyderabad 500007, Andhra Pradesh, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2009 Sep 1;73(5):916-21. doi: 10.1016/j.saa.2009.04.019. Epub 2009 May 3.
The electronic absorption spectra of 4-hydroxy-3-formyl quinolin-2-ones and their Schiff bases were investigated in various solvents of varying polarity. The three aromatic transitions of napthalene in quinolin-2-one are shifted to longer wavelength on their transformation to anils. Electron-donating group in the anils lead to enolimine form, while electron-withdrawing group leads to an equilibrium mixture of enolimine and ketoamine forms and the Schiff base derived from alkyl amine exist in ketoamine form. The prototropic interconversion of enolimine and ketoimine forms in the anils with the electron-withdrawing substituted anils is further supported by proton NMR studies. The spectral shifts are solvent dependent. Dipolar aprotic solvents bring bathochromic shift while polar protic solvents cause blue shift in the longer wavelength absorption maxima. In the case of Schiff bases substituted by electron-donating group the bathochromic shift is directly related to the polarity of the solvents.
研究了4-羟基-3-甲酰基喹啉-2-酮及其席夫碱在不同极性溶剂中的电子吸收光谱。喹啉-2-酮中萘的三个芳香跃迁在转化为缩苯胺时向更长波长移动。缩苯胺中的供电子基团导致烯醇亚胺形式,而吸电子基团导致烯醇亚胺和酮胺形式的平衡混合物,并且源自烷基胺的席夫碱以酮胺形式存在。质子核磁共振研究进一步支持了缩苯胺中烯醇亚胺和酮亚胺形式与吸电子取代缩苯胺的质子互变异构。光谱位移取决于溶剂。偶极非质子溶剂会引起红移,而极性质子溶剂会导致更长波长吸收最大值处的蓝移。在被供电子基团取代的席夫碱的情况下,红移与溶剂的极性直接相关。