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Intramolecular Hydrogen Bonding and Conformational Preferences of Arzanol—An Antioxidant Acylphloroglucinol

机译:阿尔扎醇的分子内氢键键合和构象偏好-一种抗氧化剂酰基间苯三酚

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摘要

Arzanol is a naturally-occurring prenylated acylphloroglucinol isolated from Helichrysum italicum and exhibiting anti-oxidant, antibiotic and antiviral activities. The molecule contains an α-pyrone moiety attached to the phloroglucinol moiety through a methylene bridge. The presence of several hydrogen bond donor or acceptor sites makes intramolecular hydrogen bonding patterns the dominant stabilising factor. Conformers with all the possible different hydrogen bonding patterns were calculated at the HF/6-31G(d,p) and DFT/B3LYP/6-31+G(d,p) levels with fully relaxed geometry in vacuo and in three solvents—chloroform, acetonitrile and water (these levels being chosen to enable comparisons with previous studies on acylphloroglucinols). Calculations in solution were performed with the Polarisable Continuum Model. The results show that the lowest energy conformers have the highest number of stronger intramolecular hydrogen bonds. The influence of intramolecular hydrogen bonding patterns on the other molecular properties is also analysed.
机译:Arzanol是一种天然的烯丙基化的酰基间苯三酚,从Helichrysum italicum中分离出来,具有抗氧化剂,抗生素和抗病毒活性。该分子包含通过亚甲基桥连接至间苯三酚部分的α-吡喃酮部分。几个氢键供体或受体位点的存在使分子内氢键模式成为主要的稳定因子。在HF / 6-31G(d,p)和DFT / B3LYP / 6-31 + G(d,p)的水平下,在真空中和三种溶剂中具有完全弛豫的几何结构,计算出具有所有可能的不同氢键模式的合格者—氯仿,乙腈和水(选择这些水平是为了与以前的酰基间苯三酚研究进行比较)。解决方案中的计算是使用Polarisable Continuum模型进行的。结果表明,最低能量构象异构体具有最多数量的更强的分子内氢键。还分析了分子内氢键模式对其他分子性质的影响。

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