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涉及有机氟的分子内氢键:基于密度泛函理论的理论计算证实的核磁共振研究。

Intramolecular Hydrogen Bonding Involving Organic Fluorine: NMR Investigations Corroborated by DFT-Based Theoretical Calculations.

作者信息

Mishra Sandeep Kumar, Suryaprakash N

机构信息

NMR Research Centre, Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560012, India.

出版信息

Molecules. 2017 Mar 7;22(3):423. doi: 10.3390/molecules22030423.

Abstract

The combined utility of many one and two dimensional NMR methodologies and DFT-based theoretical calculations have been exploited to detect the intramolecular hydrogen bond (HB) in number of different organic fluorine-containing derivatives of molecules, viz. benzanilides, hydrazides, imides, benzamides, and diphenyloxamides. The existence of two and three centered hydrogen bonds has been convincingly established in the investigated molecules. The NMR spectral parameters, viz., coupling mediated through hydrogen bond, one-bond NH scalar couplings, physical parameter dependent variation of chemical shifts of NH protons have paved the way for understanding the presence of hydrogen bond involving organic fluorine in all the investigated molecules. The experimental NMR findings are further corroborated by DFT-based theoretical calculations including NCI, QTAIM, MD simulations and NBO analysis. The monitoring of H/D exchange with NMR spectroscopy established the effect of intramolecular HB and the influence of electronegativity of various substituents on the chemical kinetics in the number of organic building blocks. The utility of DQ-SQ technique in determining the information about HB in various fluorine substituted molecules has been convincingly established.

摘要

多种一维和二维核磁共振方法以及基于密度泛函理论(DFT)的理论计算相结合,已被用于检测多种不同的含氟有机分子衍生物中的分子内氢键(HB),即苯甲酰苯胺、酰肼、酰亚胺、苯甲酰胺和二苯基草酰胺。在所研究的分子中,已令人信服地证实了二中心和三中心氢键的存在。核磁共振光谱参数,即通过氢键介导的耦合、一键NH标量耦合、NH质子化学位移随物理参数的变化,为理解所有研究分子中涉及有机氟的氢键的存在铺平了道路。基于DFT的理论计算(包括非共价相互作用(NCI)、量子拓扑原子分子理论(QTAIM)、分子动力学(MD)模拟和自然键轨道(NBO)分析)进一步证实了核磁共振实验结果。用核磁共振光谱监测H/D交换,确定了分子内氢键的影响以及各种取代基的电负性对多种有机结构单元中化学动力学的影响。已令人信服地证实了双量子-单量子(DQ-SQ)技术在确定各种氟取代分子中氢键信息方面的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f284/6155419/6075c7b159c8/molecules-22-00423-g001.jpg

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