Ruhr-Universität Bochum, Fakultät für Chemie und Biochemie, Organische Chemie II, Universitätsstraße 150, 44801 Bochum, Germany.
Phys Chem Chem Phys. 2022 Feb 9;24(6):4042-4050. doi: 10.1039/d1cp05688c.
Thioureas are well-known structural motifs in supramolecular anion recognition. Their conformational preferences are typically characterized by detailed NMR spectroscopy and crystallography, which are often complemented with computational results from geometry optimizations. Herein we investigate a chiral tris(thiourea) based on tris(2-aminoethyl)amine, which acts as an anion receptor for chloride and hydrogen sulfate. We show that a detailed NMR analysis led to a rather ambiguous picture of the conformational preferences of 1 in its complexes. The computational results were found to depend heavily on the selected computational level (functionals with or without dispersion corrections) and relative energies (zero-point corrected Gibbs free energies) used for the calculation of the Boltzmann weights. Only the in-depth analysis of the experimentally observed vibrational circular dichroism (VCD) spectra and comparison with computed spectral signatures allowed us to reveal the actual chiral binding orientation in chloroform solution.
硫脲是超分子阴离子识别中众所周知的结构基序。它们的构象偏好通常通过详细的 NMR 光谱和晶体学来表征,这些通常辅以来自几何优化的计算结果。在这里,我们研究了一种基于三(2-氨基乙基)胺的手性三(硫脲),它作为氯离子和硫酸氢根的阴离子受体。我们表明,详细的 NMR 分析导致了 1 在其配合物中构象偏好的相当模糊的图像。计算结果发现严重依赖于所选的计算水平(是否带有色散校正的函数)和相对能量(用于计算玻尔兹曼权重的零点校正吉布斯自由能)。只有对实验观察到的振动圆二色性(VCD)光谱的深入分析,并与计算的光谱特征进行比较,才能揭示在氯仿溶液中实际的手性结合取向。