Ludovico Gabriela S, Barros Itallo H S, Sallum Loide O, Lima Rosa S, Valverde Clodoaldo, Camargo Ademir J, Baseia Basílio, Napolitano Hamilton B
Grupo de Química Teórica e Estrutural de Anápolis, Universidade Estadual de Goiás, Anápolis, GO, 75001-970, Brazil.
Faculdade do Instituto Brasil de Ciência e Tecnologia, Anápolis, GO, 75133-050, Brazil.
J Mol Model. 2021 Jan 27;27(2):52. doi: 10.1007/s00894-021-04673-9.
Chalcones are organic compounds that present a number of properties. This study presents a comprehensive structural description of a new derivative of a chlorine-substituted chalcone in comparison with a bromine chalcone. Also, supermolecule and sum-over-state approach were used to describe the optical properties of these structures regarding the substitution of the bromine by the chlorine atom. In addition, the electrical properties, dipole moment, linear polarizability, and second IDRI hyperpolarizability were calculated. The linear refractive index and the third-order nonlinear macroscopic susceptibility were evaluated as a function of the applied electric field frequency. Furthermore, the quantum mechanics calculations that were implemented at the M06-2X/6-311++G(d,p) level of the theory for these isostructural chalcones indicate that the change in halogen atoms does not cause meaningful changes in their conformation. Finally, we can postulate that side-to-side and the antiparallel interactions are the interaction forces that drive the crystal growth for new isostructural chalcones. The NLO properties showed title compounds that are good candidates for use as NLO materials.
查尔酮是具有多种性质的有机化合物。本研究给出了一种氯取代查尔酮新衍生物与溴代查尔酮相比的全面结构描述。此外,采用超分子和态叠加方法来描述这些结构在溴原子被氯原子取代时的光学性质。另外,还计算了电学性质、偶极矩、线性极化率和二阶超极化率。作为外加电场频率的函数,评估了线性折射率和三阶非线性宏观极化率。此外,在M06 - 2X/6 - 311++G(d,p)理论水平上对这些同构查尔酮进行的量子力学计算表明,卤素原子的变化不会导致其构象发生有意义的变化。最后,我们可以推测,面对面和平行反式相互作用是驱动新同构查尔酮晶体生长的相互作用力。非线性光学性质表明标题化合物是用作非线性光学材料的良好候选物。