Department of Chemistry, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Avenida Instituto Politécnico Nacional 2508, Mexico City, 07360, Mexico.
Prog Chem Org Nat Prod. 2021;114:253-311. doi: 10.1007/978-3-030-59444-2_3.
The most significant new techniques that have been used in the twenty-first century for the structure elucidation of sesquiterpenes and some derivatives are reviewed in this chapter. A distinctive feature of these methodologies is the combination of accurate experimental measurements with theoretical data obtained by molecular modeling calculations that allow to visualize, understand, and quantify many structural characteristics. This has been the case for NMR spectroscopy, which has expanded its potential for solving complex structural problems by means of comparison with quantum mechanical molecular models. Ab initio and density functional theory calculations of chemical shifts, coupling constants, and residual chemical shift anisotropies have played important roles in the solution of many structures of sesquiterpenes. The assignments of their absolute configurations by evaluation of calculated and experimental chiroptical properties as electronic and vibrational circular dichroism are also reviewed. This chapter also includes the use of X-ray diffraction analysis with emphasis on calculations of the Flack and Hooft parameters, which are applicable to all molecules that crystallize in non-centrosymmetric space groups. The accurate molecular models of sesquiterpenes, validated by concordance with their experimental properties, are nowadays essential for the interpretation of the effects of these natural products on biological systems.
本章综述了二十一世纪中用于阐明倍半萜及其某些衍生物结构的一些最重要的新技术。这些方法的一个显著特点是将准确的实验测量值与通过分子建模计算获得的理论数据相结合,这些数据可用于可视化、理解和量化许多结构特征。这在 NMR 光谱学中已经得到了体现,它通过与量子力学分子模型进行比较,扩展了其解决复杂结构问题的潜力。化学位移、偶合常数和残余化学位移各向异性的从头算和密度泛函理论计算在解决许多倍半萜结构问题方面发挥了重要作用。通过评估计算和实验手性光学性质(如电子和振动圆二色性)来确定其绝对构型也得到了综述。本章还包括使用 X 射线衍射分析,重点是 Flack 和 Hooft 参数的计算,这些参数适用于所有在非中心对称空间群中结晶的分子。经过与实验性质一致验证的倍半萜精确分子模型,如今对于解释这些天然产物对生物系统的影响至关重要。