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On the tautomers of hypericin

机译:金丝桃素的互变异构体

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Hypericin has 16 theoretically conceivable tautomers (10 with and 6 without Kekule' structural formulas). AM1 calculations show that two factors determine the relative stability of the tautomers. The dominant factor is the mode of conjugation of the pi-electrons. A less pronounced, yet significant, factor is the steric repulsion of the carbonyl and/or hydroxy groups in positions 3 and 4. Among tautomers with equal pi-electron conjugation, the least stable are those having carbonyl groups in positions 3 and/or 4. The tautomer a(7, 14), with carbonyl groups in positions 7 and 14, is the far most stable one; the next two tautomers -Q(1, 7) and Q(7, 13) -have by some 40 kJ/mol higher energies, followed by Q(3, 7), Q(8, 13), and Q(1, 6) with energies 60, 70 and 70 kJ/mol above the energy of e(7, 14), etc. The energy values of the hypothetical tautomers without Kekule structures Lie 150-200 kJ/mol above e(7, 14); therefore, these are of no practical relevance. [References: 27]
机译:金丝桃素具有16种理论上可以想象的互变异构体(具有Kekule结构式的10个和不具有Kekule结构式的6个)。 AM1的计算表明,两个因素决定了互变异构体的相对稳定性。主导因素是π电子的共轭模式。不太明显但重要的因素是位置3和4上羰基和/或羟基的空间排斥。在具有相同π电子共轭的互变异构体中,最不稳定的是在位置3和/或4上具有羰基的互变异构体。互变异构体a(7、14),最稳定的是在7和14位带有羰基的互变异构体;接下来的两个互变异构体-Q(1,7)和Q(7,13)-具有高约40 kJ / mol的能量,其次是Q(3,7),Q(8,13)和Q(1, 6)具有比e(7,14)的能量高60、70和70 kJ / mol的能量,等等。没有Kekule结构的假设互变异构体的能量值在e(7,14)之上150-200 kJ / mol;因此,这些都没有实际意义。 [参考:27]

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