Department of Chemistry, University of Turku, FI-20014 Turku, Finland.
J Fluoresc. 2011 Nov;21(6):2117-22. doi: 10.1007/s10895-011-0912-5. Epub 2011 Jul 13.
Electronic absorption, luminescence, IR and Raman spectra of polymorphous forms of fluoroquinolones were investigated. Assignment of the band maxima due to π→π* and n→π* electronic transitions were done. The structural changes are responsible for the absorption band modifications. One-electron transitions in the long wavelength region, excitation wavelengths, oscillator strengths and involved molecular orbitals for the zwitter-ionic and cationic protonated forms for different fluoroquinolones were calculated with quantum-chemical and molecular dynamic methods. The electron density redistributions on the FQs separate fragments during the photoexcitation to the S(1)*-state were carry out by Mulliken calculations. It was shown that the degree of neutral and zwitter-ion FQs penetration through the bacterium membrane is different.
研究了氟喹诺酮多晶型的电子吸收、发光、红外和拉曼光谱。对π→π和 n→π电子跃迁引起的带极大值进行了分配。结构变化导致吸收带的修饰。用量子化学和分子动力学方法计算了不同氟喹诺酮的两性离子和阳离子质子化形式在长波长区域、激发波长、振子强度和涉及的分子轨道中的单电子跃迁。通过Mulliken 计算,在光激发到 S(1)*态时,对 FQs 分离片段上的电子密度重新分布进行了研究。结果表明,中性和两性离子 FQs 穿透细菌膜的程度不同。