Tupikina Elena Yu, M Tolstoy Peter, A Titova Anna, A Kostin Mikhail, S Denisov Gleb
Institute of Chemistry, St. Petersburg State University, St. Petersburg, Russia.
Department of Physics, St. Petersburg State University, St. Petersburg, Russia.
J Comput Chem. 2021 Mar 30;42(8):564-571. doi: 10.1002/jcc.26482. Epub 2021 Jan 18.
In this work the possibility of using the IR intensity of the stretching vibration ν of proton donor group for estimation of hydrogen bond strength was investigated. For a set of complexes with FH···X (X = F, N, O) hydrogen bonds in the wide range of energies (0.1-49.2 kcal/mol) vibrational frequencies ν and their intensities A were calculated (CCSD at complete basis set limit). The validity of the previously proposed linear proportionality between the intensification of the stretching vibration ν in IR spectra and hydrogen bond enthalpy -ΔH = 12.2 (A. V. Iogansen, Spectrochimica Acta A 1999) was examined. It is shown that for a range of similar hydrogen bond types with complexation energies ∆E <15 kcal/mol the ∆E( ) function remains similar to that proposed in the Iogansen's work, while upon strengthening this dependency becomes significantly nonlinear. We examined two other parameters ( and ) related to IR intensity as descriptors of hydrogen bond strength which are proportional to transition dipole moment matrix element and mass-independent dipole moment derivative. It was found that the dependency ∆E( ) stays linear in the whole studied range of complexation energies and it can be used for evaluation of ∆E from infrared spectral data with the accuracy about 2 kcal/mol. The mass-independent product is an appropriate descriptor for sets of complexes with various hydrogen bond types. Simple equations proposed in this work can be used for estimations of hydrogen bond strength in various systems, where experimental thermodynamic methods or direct calculations are difficult or even impossible.
在本工作中,研究了利用质子供体基团伸缩振动ν的红外强度来估算氢键强度的可能性。对于一系列具有FH···X(X = F、N、O)氢键且能量范围较宽(0.1 - 49.2千卡/摩尔)的配合物,计算了振动频率ν及其强度A(在完全基组极限下的CCSD方法)。检验了先前提出的红外光谱中伸缩振动ν的增强与氢键焓-ΔH = 12.2之间的线性比例关系的有效性(A. V. Iogansen,《光谱化学学报A》,1999年)。结果表明,对于一系列络合能∆E < 15千卡/摩尔的相似氢键类型,∆E( )函数与Iogansen工作中提出的函数相似,而当这种依赖性增强时,它会变得明显非线性。我们研究了另外两个与红外强度相关的参数( 和 )作为氢键强度的描述符,它们与跃迁偶极矩矩阵元以及与质量无关的偶极矩导数成正比。发现∆E( )的依赖性在整个研究的络合能范围内保持线性,并且它可用于从红外光谱数据评估∆E,精度约为2千卡/摩尔。与质量无关的乘积 是具有各种氢键类型的配合物集合的合适描述符。本工作中提出的简单方程可用于估算各种系统中的氢键强度,在这些系统中,实验热力学方法或直接计算困难甚至不可能。