首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Substituents destabilize the molecule by increasing biradicaloid character and stabilize by intramolecular charge transfer in the derivatives of benzobis(thiadiazole) and thiadiazolothienopyrazine: A computational study
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Substituents destabilize the molecule by increasing biradicaloid character and stabilize by intramolecular charge transfer in the derivatives of benzobis(thiadiazole) and thiadiazolothienopyrazine: A computational study

机译:取代基通过增加体育骨质特性并通过苯并二唑(噻二唑)和噻二唑噻吩吡嗪的衍生物中的分子内电荷转移来稳定分子:计算研究

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摘要

Keeping in view the possible applications of singlet open-shell molecules as semiconductors, non-classical derivatives of the heterocyclic rings benzobis(thiadiazole) (BBT) and its positional isomer thiadiazolothienopyrazine (TTP) are characterized using DFT methodologies. M06-2X, B3LYP and BHandHLYP functionals were used to optimize the geometries and estimate the vertical transition energies. It is observed that unlike the BHandHLYP functional (50 % exchange), which gives rise to spin-contaminated solutions for all molecules in the series, M06-2X (54 % exchange) affords a wavefunction either with no instability or negligible instability for most of the molecules. The results are compared with the earlier reported experimental data and those obtained herein using the spin-flip (SF)-5050 method. It is found that B3LYP does not fare well while on the other hand the M06-2X and SF-50-50 are in good agreement with the experimental results. It is seen that M06-2X TD-DFT for the molecules can be carried out without major spin contamination and also that the more time-consuming CI can be avoided for the calculation of transition energies. The biradical nature of the molecules is estimated by the singlet-triplet gap. Intramolecular charge transfer is calculated. It is found that the ring substituents donate charge in the ground state, creating a zwitterionic structure. Thus the substituents play an interesting dual role, decreasing the stability of the molecule by increasing the biradical character (small HOMO-LUMO gap), and stabilization of this ground state by intramolecular charge transfer.
机译:在观察单次突出壳分子作为半导体的可能应用,杂环环(噻二唑)(BBT)及其位置异构体噻二唑噻吩吡嗪(TTP)的可能应用是使用DFT方法表征。 M06-2X,B3LYP和BHANDHLYP功能用于优化几何形状并估计垂直过渡能量。观察到与Bandhlyp功能(50%交换)不同,这对该系列中的所有分子产生了旋转污染的解决方案,M06-2X(54%的交换)提供了一种浪潮,无稳定性或大多数易不稳定性分子。将结果与先前报告的实验数据和使用旋转翻转(SF)-5050方法进行比较。发现B3LYP不耗费良好的,而另一方面,M06-2X和SF-50-50与实验结果吻合良好。可以看出,对于分子的M06-2X TD-DFT可以在没有主要的旋转污染的情况下进行,并且还可以避免更耗时的CI来计算过渡能量。分子的血管分性质估计是单态三态间隙。计算分子内电荷转移。发现环取代基以地态捐给电荷,产生两性离子结构。因此,取代基通过增加荚膜特征(小HOMO-LUMO间隙)来降低分子的稳定性,并通过分子内电荷转移来稳定这种地位。

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