2016
DOI: 10.1016/j.jscs.2014.12.009
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The electro-optical and charge transport study of imidazolidin derivative: Quantum chemical investigations

Abstract: Imidazolidin derivatives gained significant attention in our daily life from better biological activity to the semiconducting materials. The present investigation deals with the in depth study of (Z)-2-sulfanylidene-5-(thiophen-2-ylmethylidene)imidazolidin-4-one (STMI) with respect to their structural, electronic, optical and charge transport properties as semiconducting material. The ground and first excited state geometries were optimized by applying density functional theory (DFT) and time dependent DFT, re… Show more

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Cited by 18 publications
(7 citation statements)
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“…parameters were compared with the experimental crystal structure obtained in the solid-state. 59,60 It can be observed that there is intra-molecular bonding between O(3) and H(20) with a bond length of 2.332 Å and between O(2) and H(20) with a bond length of 2.434 Å, obtained by B3LYP, whereas these values calculated by HF were found to be 2.363 Å and 2.448 Å, respectively. These are in close agreement with the experimental values of 2.360 Å and 2.450 Å (presented in Table 1).…”
Section: Molecular Geometrymentioning
confidence: 96%
“…parameters were compared with the experimental crystal structure obtained in the solid-state. 59,60 It can be observed that there is intra-molecular bonding between O(3) and H(20) with a bond length of 2.332 Å and between O(2) and H(20) with a bond length of 2.434 Å, obtained by B3LYP, whereas these values calculated by HF were found to be 2.363 Å and 2.448 Å, respectively. These are in close agreement with the experimental values of 2.360 Å and 2.450 Å (presented in Table 1).…”
Section: Molecular Geometrymentioning
confidence: 96%
“…Recently, we have optimized the geometries of organic compounds different compounds by using B3LYP functional and proved that it is reliable approach to reproduce the experimental data [8,[14][15][16][17][18][19]. The absorption wavelengths have been computed by using TD-DFT [20,21].…”
Section: Computational Detailsmentioning
confidence: 99%
“…Additionally, previous work revealed that the B3LYP/6-31G** level of theory is good to predict the electronic and charge transport properties of sulfur compounds [45]. In the current study, the ground and excited state geometries have been optimized by DFT [46][47][48][49][50][51] at B3LYP/6-31G** and TDDFT levels of theory which have been proved as effective approaches, respectively [52][53][54]. The TD-B3LYP/6-31G** level was applied to optimize the first excited state geometries of the studied compounds.…”
Section: Computational Detailsmentioning
confidence: 97%