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1,3 - 二苯基 - 1H - 吡唑并[3,4 - b]喹啉的甲氧基和乙氧羰基衍生物的光吸收

Optical absorption of methoxy and carboethoxy derivatives of 1,3-diphenyl-1H-pyrazolo[3,4-b]quinoline.

作者信息

Całus S, Gondek E, Pokladko M, Kulig E, Jarosz B, Kityk A V

机构信息

Department of Electrical Engineering, Technical University of Czestochowa, Armii Krajowej 17, 42-200 Czestochowa, Poland.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2007 Jul;67(3-4):1007-15. doi: 10.1016/j.saa.2006.09.020. Epub 2006 Sep 24.

Abstract

Paper deals with experimental investigations and quantum chemical calculations of the optical absorption spectra of methoxy and carboethoxy 1,3-diphenyl derivatives of the pyrazoloquinoline ([PQ]): 6-methoxy-1,3-dyphenil-[PQ], 6-methoxy-1,3-(p-methoxyphenyl)-[PQ], 6-methoxy-1-(p-methoxyphenyl)-[PQ] and 6-carboethoxy-1,3-diphenyl-[PQ]. The quantum chemical calculations are performed by means of the semiempirical quantum chemical methods (AM1 or PM3) applied to: (a) the equilibrium molecular conformation in vacuo (T=0 K); (b) the molecular dynamic (MD) trajectory (T=300 K) which includes the dynamics of a certain molecular fragment (moiety) only (fragmental MD simulations); or (c) the MD trajectory obtained for most general case within the total MD simulations at T=300 K. The results of these calculations are compared with the measured spectra of the optical absorption. The quantum chemical simulations show that the dynamics of the methoxy or carboethoxy groups practically does not influence the absorption spectrum whereas the strongest its modification (300<lambda< or =360 nm) is found to be related with dynamics of phenyl(II) [Ph2] or phenyl(II)-methoxy [Ph2-MeO] moieties which are characterized by large libration amplitudes. At the same time, the total MD reproduces evidently much better the halfwidth of most absorption bands compared to ones observed in the measured spectra. Comparing the measured and calculated spectral positions of the absorption threshold the quantum chemical method PM3 gives the best agreement for all compounds.

摘要

本文研究了吡唑并喹啉([PQ])的甲氧基和乙氧羰基1,3 - 二苯基衍生物的光吸收光谱的实验研究和量子化学计算:6 - 甲氧基 - 1,3 - 二苯基 - [PQ]、6 - 甲氧基 - 1,3 - (对甲氧基苯基) - [PQ]、6 - 甲氧基 - 1 - (对甲氧基苯基) - [PQ]和6 - 乙氧羰基 - 1,3 - 二苯基 - [PQ]。量子化学计算通过半经验量子化学方法(AM1或PM3)进行,应用于:(a)真空中的平衡分子构象(T = 0 K);(b)仅包括特定分子片段(部分)动力学的分子动力学(MD)轨迹(T = 300 K)(片段MD模拟);或(c)在T = 300 K的全MD模拟中最一般情况下获得的MD轨迹。将这些计算结果与光吸收的测量光谱进行比较。量子化学模拟表明,甲氧基或乙氧羰基的动力学实际上不影响吸收光谱,而其最强的变化(300<λ≤360 nm)与具有大摆动幅度的苯基(II)[Ph2]或苯基(II) - 甲氧基[Ph2 - MeO]部分的动力学有关。同时,与测量光谱中观察到的相比,全MD明显更好地再现了大多数吸收带的半高宽。比较吸收阈值的测量和计算光谱位置,量子化学方法PM3对所有化合物给出了最佳一致性。

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