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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Density Functional Molecular Study on the Full Conformational Space of the S-4-(2-Hydroxypropoxy)carbazol Fragment of Carvedilol (1-(9H-Carbazol-4-yloxy)-3-[2-(2-methoxyphenoxy)ethylamino]-2-propanol) in Vacuum and in Different Solvent Media
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Density Functional Molecular Study on the Full Conformational Space of the S-4-(2-Hydroxypropoxy)carbazol Fragment of Carvedilol (1-(9H-Carbazol-4-yloxy)-3-[2-(2-methoxyphenoxy)ethylamino]-2-propanol) in Vacuum and in Different Solvent Media

机译:卡维地洛(1-(9H-咔唑-4-基氧基)-3- [2-(2-甲氧基苯氧基)乙基氨基]-的S-4-(2-羟基丙氧基)咔唑片段的全部构象空间的密度泛函分子研究2-丙醇)在真空和不同溶剂介质中

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摘要

Density functional theory (DFT) conformational analysis was carried out on the potential energy hypersurface (PEHS) of the carbazole-containing molecular fragment, S-4-(2-hydroxypropoxy)-carbazol, of the chiral cardiovascular drug molecule carvedilol, (1-(9H-carbazol-4-yloxy)-3-[2-methoxy-phenoxy)ethylamino]-2-propanol). The PEHS was computed in vacuum, chloroform, ethanol, DMSO, and water at the B3LYP/6-31G(d) level of theory. The carbazole ring system was confirmed to be planar, and the resultant PEHS in vacuum contained 19 converged minima, of which the global minima possessed a conformation with X_1, X_2, and X_3 in the anti position and X_(10) in the g position. Conformer stability for the S-4-(2-hydroxypropoxy)carbazol PEHS was influenced by intramolecular hydrogen bonding. Tomasi PCM reaction-field calculations revealed that the lowest SCF energies, relative conformer energies, and solvation free energies (ΔG~(solvation)) for the S-4-(2-hydroxypropoxy)carbazol PEHS were in protic solvents, ethanol and water, because of the larger hydrogen bond donor values of these solvents, which aid in stabilization of the dipole moment created by the carbazole ring system and the oxygen and nitrogen atoms. However, solvent effects contributed most significantly to the stabilization of S-4-(2-hydroxypropoxy)carbazol conformers that contained no internal hydrogen bonding, whereas solvent effects were not as important for conformers that contained intramolecular hydrogen bonding.
机译:对手性心血管药物分子卡维地洛的含咔唑分子片段S-4-(2-羟基丙氧基)-咔唑的势能超表面(PEHS)进行了密度泛函理论(DFT)构象分析,(1- (9H-咔唑-4-基氧基)-3- [2-甲氧基-苯氧基)乙氨基] -2-丙醇)。 PEHS是在真空,氯仿,乙醇,DMSO和水中以理论值B3LYP / 6-31G(d)进行计算的。咔唑环系统被证实是平面的,并且真空中得到的PEHS包含19个收敛的极小值,其中全局极小值在反位置具有X_1,X_2和X_3,在g位置具有X_(10)。 S-4-(2-羟基丙氧基)咔唑PEHS的构象异构体稳定性受分子内氢键的影响。 Tomasi PCM反应场计算表明,S-4-(2-羟基丙氧基)咔唑PEHS的最低SCF能量,相对构象异构体能量和溶剂化自由能(ΔG〜(溶剂化))处于质子溶剂,乙醇和水中,由于这些溶剂的氢键供体值较大,因此有助于稳定咔唑环系统以及氧和氮原子产生的偶极矩。但是,溶剂效应对不包含内部氢键的S-4-(2-羟基丙氧基)咔唑构象异构体的稳定性贡献最大,而对于包含分子内氢键的构象异构体,溶剂效应并不那么重要。

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