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利用 Zephycandidine 的剩余偶极耦合检测反磁溶液中的磁场和分子间相互作用。

Sensing Magnetic Field and Intermolecular Interactions in Diamagnetic Solution Using Residual Dipolar Couplings of Zephycandidine.

机构信息

Chemical Analysis Facility, School of Chemistry, Food and Pharmacy, University of Reading, Whiteknights Campus, P.O. Box 224, Reading RG6 6AD, UK.

School of Natural Sciences (Chemistry), Bangor University, Bangor LL57 2UW, UK.

出版信息

Int J Mol Sci. 2022 Dec 1;23(23):15118. doi: 10.3390/ijms232315118.

Abstract

An unusual residual dipolar coupling of methylene protons was recorded in NMR spectra because aromatic zephycandidine has preferential orientation at the external magnetic field. The observed splitting contains contribution from the dipole-dipole -coupling and the anisotropic component of -coupling. Absolute values of the anisotropy of magnetic susceptibility |Δ| are larger for protic solvents because of the hydrogen-bonding compared to aprotic solvents for which polar and dispersion forces are more important. The energy barrier for the reorientation due to hydrogen-bonding is 1.22 kJ/mol in methanol- 0.85 kJ/mol in ethanol- and 0.87 kJ/mol in acetic acid-. In dimethyl sulfoxide-, 1.08 kJ/mol corresponds to the interaction of solvent lone pair electrons with π-electrons of zephycandidine. This energy barrier decreases for acetone- which has smaller electric dipole moment. In acetonitrile-, there is no energy barrier which suggests solvent ordering around the solute due to the solvent-solvent interactions. The largest absolute values of the magnetic anisotropy are observed for aromatic benezene- and tolune- which have their own preferential orientation and enhance the order in the solution. The magnetic anisotropy of "isolated" zephycandidine, not hindered by intermolecular interaction could be estimated from the correlation between Δ and cohesion energy density.

摘要

在 NMR 谱中记录到亚甲基质子的非寻常残余偶极耦合,因为芳香族西风坎定具有在外磁场中的优先取向。观察到的分裂包含来自偶极-偶极耦合和耦合的各向异性分量的贡献。与质子溶剂相比,对于无质子溶剂,由于氢键,磁化率各向异性的绝对值 |Δ| 更大,因为极性和色散力更重要。由于氢键引起的重排的能垒在甲醇中为 1.22 kJ/mol-在乙醇中为 0.85 kJ/mol-在乙酸中为 0.87 kJ/mol。在二甲基亚砜中,1.08 kJ/mol 对应于溶剂孤对电子与西风坎定的 π 电子之间的相互作用。对于具有较小偶极矩的丙酮,该能垒减小。在乙腈中,由于溶剂-溶剂相互作用,没有能垒表明溶质周围的溶剂有序。对于具有自身优先取向并增强溶液中有序性的芳香族苯和甲苯,观察到最大的磁各向异性绝对值。不受分子间相互作用阻碍的“孤立”西风坎定的磁各向异性可以通过 Δ 和内聚能密度之间的相关性来估计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7689/9737189/8c80af97facf/ijms-23-15118-g001.jpg

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