Department of Chemistry, Colorado School of Mines, Golden, Colorado, USA.
J Comput Chem. 2022 Sep 15;43(24):1656-1661. doi: 10.1002/jcc.26967. Epub 2022 Jul 23.
Per- and polyfluoroalkyl substances (PFAS) have been widely used the past 70 years in numerous applications due to their chemical and thermal stability. Due to their robust stability, they are environmentally recalcitrant which made them one of the most persistent environmental contaminants. In addition to strong CF bond strength, oleophobicity, hydrophobicity, and high reduction-oxidation (redox) potential of PFAS has led to their inefficient degradation by traditional means. A characteristic of their structure is also their preference to adopt helical conformations along the carbon backbone, contrary to their hydrocarbon analogues. This work investigates the helical nature of perfluoroalkanes through their conformational distributions, especially as a benchmark for determining the impact of polar head groups, heteroatoms, and radical center on helical conformations. Since structure governs reactivity and molecular properties, it is important to assess if minor chemical perturbations in the structure will lead to changes in the conformations. Based on density functional theory calculations and comprehensive conformational distributions, it was concluded that the helicity is a local structural property which changes significantly with the presence of heteroatoms in the perfluoroalkyl chain as well as with the presence of radical centers.
全氟和多氟烷基物质(PFAS)由于其化学和热稳定性,在过去 70 年中被广泛应用于众多领域。由于其强大的稳定性,它们在环境中难以降解,这使它们成为最持久的环境污染物之一。除了强大的 CF 键强度、疏油性、疏水性和高氧化还原(redox)电位外,PFAS 的这些特性还导致它们无法通过传统方法有效降解。它们结构的一个特点是,它们沿着碳骨架优先采用螺旋构象,这与它们的碳氢化合物类似物相反。这项工作通过它们的构象分布研究了全氟烷烃的螺旋性质,特别是作为确定极性头基团、杂原子和自由基中心对螺旋构象影响的基准。由于结构决定反应性和分子性质,因此评估结构中的微小化学干扰是否会导致构象变化非常重要。基于密度泛函理论计算和全面的构象分布,得出结论,螺旋性是一种局部结构性质,它会随着全氟烷基链中杂原子的存在以及自由基中心的存在而发生显著变化。