Intra- and intermolecular H-bonding of benzotriazole UV stabilizers evidenced using 1D nuclear Overhauser effect experiments

J. Hobley, V. Malatesta
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引用次数: 0

Abstract

The UV absorber protection mechanism of 2-hydroxyphenylbenzotriazoles is based upon energy dissipation via an excited state proton transfer from the phenolic OH group to the triazole nitrogen(s). Using 1H-NMR NOE experiments we have established that 2-(2’hydroxy-5′- methylphenyl)-benzotriazole (UVA1) exists in chloroform as an intramolecularly H-bonded form whereas in DMSO this bond is disrupted by the formation of intermolecular H-bonding to the solvent. Conversely, for compounds 2-(2′-hydroxy-3′,5′-di(1,1-dimethyl propane))-benzotriazole (UVA2), and 3′-methylene-hydantoin-2-(2′-hydroxy-5′-methylphenyl)-benzotriazole (UVA3) having bulky substituents ortho to the phenolic OH group 1H-NMR NOE experiments indicate that upon changing solvent from DMSO to chloroform the strength of the intramolecular H-bond is not appreciably affected. The implication of the H-bond strength upon the UV stabilizing effectiveness is discussed.
用一维核Overhauser效应实验证明了苯并三唑类紫外线稳定剂分子内和分子间的氢键
2-羟基苯基苯并三唑的紫外线吸收保护机制是基于从酚羟基到三唑氮的激发态质子转移的能量耗散。通过1H-NMR NOE实验,我们确定了2-(2 '羟基-5 ' -甲基苯基)-苯并三唑(UVA1)以分子内氢键形式存在于氯仿中,而在DMSO中,该键被与溶剂形成的分子间氢键破坏。相反,对于2-(2 ' -羟基-3 ',5 ' -二(1,1-二甲基丙烷))-苯并三唑(UVA2)和3 ' -亚甲基-苯基-2-(2 ' -羟基-5 ' -甲基苯基)-苯并三唑(UVA3)具有大体积取代基与酚羟基邻位的化合物,1H-NMR NOE实验表明,当溶剂从DMSO改为氯仿时,分子内氢键的强度没有明显影响。讨论了氢键强度对UV稳定效果的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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