Unimuke Tomsmith O, Louis Hitler, Eno Ededet A, Agwamba Ernest C, Adeyinka Adedapo S
Computational and Bio-Simulation Research Group, University of Calabar, Calabar 540004, Nigeria.
Department of Pure and Applied Chemistry, Faculty of Physical Sciences, University of Calabar, Calabar 540004, Nigeria.
ACS Omega. 2022 Apr 15;7(16):13704-13720. doi: 10.1021/acsomega.1c07361. eCollection 2022 Apr 26.
The application of plain cycloalkanes and heterocyclic derivatives in the synthesis of valuable natural products and pharmacologically active intermediates has increased tremendously in recent times with much attention being paid to the lower cycloalkane members. The structural and molecular properties of higher seven-membered and nonaromatic heterocyclic derivatives are less known despite their stable nature and vast application; thus, an insight into their structural and electronic properties is still needed. Appropriate quantum chemical calculations utilizing the ab initio (MP2) method, meta-hybrid (M06-2X) functional, and long-range-separated functionals (ωB97XD) have been utilized in this work to investigate the structural reactivity, stability, and behavior of substituents on cycloheptane (CHP) and its derivatives: azepane, oxepane, thiepane, fluorocycloheptane (FCHP), bromocycloheptane (BrCHP), and chlorocycloheptane (ClCHP). Molecular global reactivity descriptors such as Fukui function, frontier molecular orbitals (FMOs), and molecular electrostatic potential were computed and compared with lower members. The results of two population methods CHELPG and Atomic Dipole Corrected Hirshfeld Charges (ADCH) were equally compared to scrutinize the charge distribution in the molecules. The susceptibility of intramolecular interactions between the substituents and cycloalkane ring is revealed by natural bond orbital analysis and intramolecular weak interactions by the independent gradient model (IGM). Other properties such as atomic density of states, intrinsic bond strength index (IBSI), and dipole moments are considered. It is acclaimed that the strain effect is a major determinant effect in the energy balance of cyclic molecules; thus, the ring strain energies and validation of spectroscopic specificities with reference to the X-ray crystallographic data are also considered.
近年来,普通环烷烃及其杂环衍生物在有价值的天然产物和药理活性中间体合成中的应用大幅增加,其中较低环烷烃成员备受关注。尽管七元及以上的非芳香族杂环衍生物具有稳定的性质和广泛的应用,但其结构和分子性质仍鲜为人知;因此,仍需要深入了解它们的结构和电子性质。本研究采用从头算(MP2)方法、元杂化(M06-2X)泛函和长程分离泛函(ωB97XD)进行适当的量子化学计算,以研究环庚烷(CHP)及其衍生物氮杂环庚烷、氧杂环庚烷、硫杂环庚烷、氟环庚烷(FCHP)、溴环庚烷(BrCHP)和氯环庚烷(ClCHP)上取代基的结构反应性、稳定性和行为。计算了诸如福井函数、前线分子轨道(FMOs)和分子静电势等分子全局反应性描述符,并与较低成员进行了比较。同样比较了两种布居方法CHELPG和原子偶极校正 Hirshfeld电荷(ADCH)的结果,以仔细研究分子中的电荷分布。通过自然键轨道分析揭示了取代基与环烷烃环之间分子内相互作用的敏感性,通过独立梯度模型(IGM)揭示了分子内弱相互作用。还考虑了其他性质,如原子态密度、本征键强度指数(IBSI)和偶极矩。人们普遍认为,应变效应是环状分子能量平衡中的一个主要决定因素;因此,还考虑了环应变能以及参照X射线晶体学数据对光谱特异性的验证。