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Influence of Remote intramolecular hydrogen bonds on the stabilities of phenoxyl radicals and benzyl cations

机译:远程分子内氢键对苯氧基和苄基阳离子稳定性的影响

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(Figure presented) Remote intramolecular hydrogen bonds (HBs) in phenols and benzylammonium cations influence the dissociation enthalpies of their O-H and C-N bonds, respectively. The direction of these intramolecular HBs, para → meta or meta → para, determines the sign of the variation with respect to molecules lacking remote intramolecular HBs. For example, the O-H bond dissociation enthalpy of 3-methoxy-4-hydroxyphenol, 4, is about 2.5 kcal/mol lower than that of its isomer 3-hydroxy-4-methoxyphenol, 5, although group additivity rules would predict nearly identical values. In the case of 3-methoxy-4-hydroxybenzylammonium and 3-hydroxy-4-methoxybenzylammonium ions, the CBS-QB3 level calculated C-N eterolytic dissociation enthalpy is about 3.7 kcal/mol lower in the former ion. These effects are caused by the strong electron-withdrawing character of the -O~· and -CH _2~+ groups in the phenoxyl radical and benzyl cation, respectively, which modulates the strength of the HB. An O-H group in the para position of ArO~· or ArCH_2~+ becomes more acidic than in the parent molecules and hence forms stronger HBs with hydrogen bond acceptors (HBAs) in the meta position. Conversely, HBAs, such as OCH _3, in the para position become weaker HBAs in phenoxyl radicals and benzyl cations than in the parent molecules. These product thermochemistries are reflected in the transition states for, and hence in the kinetics of, hydrogen atom abstraction from phenols by free radicals (dpph~· and ROO~·). For example, the 298 K rate constant for the 4 + dpph~· reaction is 22 times greater than that for the 5 + dpph~· reaction. Fragmentation of ring-substituted benzylammonium ions, generated by ESI-MS, to form the benzyl cations reflects similar remote intramolecular HB effects.
机译:(显示的图)酚和苄基铵阳离子中的远程分子内氢键(HBs)分别影响其O-H和C-N键的离解焓。这些分子内HBs的方向para→meta或meta→para决定了缺少远程分子内HBs分子的变化迹象。例如,3-甲氧基-4-羟基苯酚4的OH键解离焓比其异构体3-羟基-4-甲氧基苯酚5的约低2.5 kcal / mol,尽管基团加和规则将预测几乎相同的值。在3-甲氧基-4-羟基苄基铵离子和3-羟基-4-甲氧基苄基铵离子的情况下,计算出的CBS-QB3水平的C-N溶解离解焓比前一个离子低约3.7kcal / mol。这些效应分别是由苯氧基和苄基阳离子中的-O〜·和-CH _2〜+基团的强吸电子特性引起的,从而调节了HB的强度。在ArO〜·或ArCH_2〜+的对位上的O-H基比在母体分子中更酸,因此形成更强的HBs,在间位带有氢键受体(HBA)。相反,对位的HBA(例如OCH _3)与母体分子相比,苯氧基和苄基阳离子的HBA变得更弱。这些产物的热化学反应反映为自由基(dpph〜·和ROO〜·)从苯酚中提取氢原子的过渡态,因此也反映了动力学。例如,4 + dpph-反应的298 K速率常数是5 + dpph-反应的22倍。由ESI-MS生成的环取代的苄基铵离子的断裂,形成苄基阳离子,反映出类似的远程分子内HB效应。

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