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Theoretical Study of 1,4-Dioxane in Aqueous Solution and Its Experimental Interaction with Nano-CuSO_4

机译:1,4-二恶烷水溶液的理论研究及其与纳米CuSO_4的相互作用

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摘要

The electronic structure, Non-Linear Optical (NLO) properties and Natural Bonding Orbital (NBO) analysis of 1,4-dioxane were investigated using the theoretical study of Density Functional Theory (DFT) calculations at the B3LYP/6-311G (d,p) level of theory. The optimized structure is nonlinear as indicated from the dihedral angles. Natural bonding orbital analysis has been analyzed in terms of the hybridization of each atom, natural charges (Core, Valence and Rydberg), bonding and antibonding orbital's second order perturbation energy (E-(2)). The calculated E-HOMO and E-LUMO energies of the title molecule can be used to explain the charge transfer in the molecule and to calculate the global properties; the chemical hardness (eta), softness (S) and electronegativity (chi). The NLO parameters: static dipole moment (mu), polarizability (alpha), anisotropy polarizability (Delta alpha) and first order hyperpolarizability (beta(tot)) of the studied molecule have been calculated at the same level of theory. The Molecular Electrostatic Potential (MEP) and Electro Static Potential (ESP) for 1,4-dioxane were investigated and analyzed. Also, the electronic absorption spectra were discussed by Time-Dependent Density Functional Theory (TD-DE7) calculations for 1,4-dioxane in 10% ethanol/water. From the experimental conductance measurements, the association thermodynamic parameters (K-A, Delta G(A), Delta H-A and Delta S-A) and complex formation thermodynamic parameters (K-f,Delta G(f), Delta H-f, and Delta S-f) of nano-CuSO4 in the presence of 1, 4-dioxane as a ligand in 10% ethanol-water at different temperatures (298.15, 303.15, 308.15 and 313.15 degrees K) were applied and calculated.
机译:使用B3LYP / 6-311G的密度泛函理论(DFT)计算的理论研究,研究了1,4-二恶烷的电子结构,非线性光学(NLO)特性和自然键合轨道(NBO)分析。 p)理论水平。从二面角可以看出,优化的结构是非线性的。已根据每个原子的杂化,自然电荷(核,价和里德伯格),键合和反键合轨道的二阶摄动能(E-(2))对自然键合轨道分析进行了分析。计算出的标题分子的E-HOMO和E-LUMO能量可用于解释分子中的电荷转移并计算整体性质。化学硬度(eta),柔软度(S)和电负性(chi)。已在相同的理论水平上计算了研究分子的NLO参数:静态偶极矩(mu),极化率(alpha),各向异性极化率(Delta alpha)和一阶超极化率(beta(tot))。研究和分析了1,4-二恶烷的分子静电势(MEP)和静电势(ESP)。此外,通过时间依赖性密度泛函理论(TD-DE7)计算了在10%乙醇/水中的1,4-二恶烷的电子吸收光谱。通过实验电导测量,纳米CuSO4的缔合热力学参数(KA,Delta G(A),Delta HA和Delta SA)和复合物形成热力学参数(Kf,Delta G(f),Delta Hf和Delta Sf)在存在1、4-二恶烷作为配体的情况下,在10%乙醇-水中,在不同温度(298.15、303.15、308.15和313.15度)下进行计算。

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