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首页> 外文期刊>International Journal of Quantum Chemistry >Effect of excess electron on structure, bonding, and spectral properties of sulfur/selenium based dichalcogen systems
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Effect of excess electron on structure, bonding, and spectral properties of sulfur/selenium based dichalcogen systems

机译:过量电子对硫/硒基二甲酰基体系结构,粘接和光谱性能的影响

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First principle based quantum chemical methods are employed to characterize structure, bonding, and spectral properties of sulfur and selenium based dichalcogen systems in presence of an excess electron. Inter molecular two-center three-electron (2c-3e) bonding between two chalcogen (X) atoms is described in the systems of the type (R-X)(2)(center dot-) (R = Ph, PhCH2 X = S, Se). In addition, effect of electron withdrawing (-NO2) and electron donating (-CH3) groups in phenyl ring on the stability of these 2c-3e bonded systems is also studied in water medium applying a macroscopic hydration model. Molecular parameters and binding energy of the neutral, (R-X)(2) and reduced, (R-X)(2)(center dot-) dichalcogen systems are compared. Search for minimum energy structures of these open shell doublet systems are carried out applying various density functionals with dispersion corrections and MP2 method considering 6-311++G (d,p) set of basis functions for all atoms. Effect of water medium is introduced through a macroscopic solvation model based on density (SMD). Frontier molecular orbitals based analysis is carried out for showing the definite presence of 2c-3e bond between two chalcogen atoms in these radical anions of sulfur and selenium based aromatic dichalcogen systems. Excited state calculations are performed on all these systems using Time Dependent Density Functional Theory (TDDFT). UV-Vis spectra are simulated and effect of solvent water on the absorption maximum of these radical anions is discussed. This study illustrates that the combination of electronic effect and geometrical flexibility decides the strength of two-center three-electron bond in these systems.
机译:基于原理的量子化学方法用于表征硫和硒基二甲基体系的结构,粘合和光谱性质在过量的电子存在下。在类型(Rx)(2)(中央点)(R = pH,PHCH2 X = S的系统中,描述了两种硫代硫代菌(X)原子之间的粘接性间的两中心三电子(2C-3E)键合。 se)。另外,在施加宏观水化模型的水介质中,还研究了苯环中的吸电子(-NO2)和电子提供(-CH3)基团的效果对这些2C-3E键合系统的稳定性。比较中性(R-X)(2)和还原,(R-X)(2)(中心点)二分甲甲基体系的分子参数和结合能。搜索这些开口的最小能量结构,在考虑所有原子的6-311 ++ g(d,p)的基函数的基础函数的基础函数的基础上进行各种密度函数,将各种密度函数应用于各种密度函数。通过基于密度(SMD)的宏观溶剂化模型引入水培养基的影响。基于前沿的基于分子的分析进行了分析,用于显示在硫和硒基芳族二甲硅原体系中的这些自由基阴离子之间的两种硫代原子之间的2C-3E键的明确存在。使用时间依赖性密度泛函理论(TDDFT)对所有这些系统进行激发态计算。讨论了uV-Vis光谱并讨论了溶剂水对这些自由基阴离子的吸收的影响。本研究说明了电子效应和几何柔性的组合在这些系统中决定了双中心三电子键的强度。

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