4.3 Article

Transmittal Effect Evaluation of Heterocyclic Rings on Nonlinear Optical Ambit of Benzotrithiophene-Based Push-Pull Driving Materials: a Theoretical Approach

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POLYCYCLIC AROMATIC COMPOUNDS
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TAYLOR & FRANCIS LTD
DOI: 10.1080/10406638.2023.2264451

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Third order NLO; benzotrithiophene (BTT); pyrrole; density functional theory; push-pull response

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In this study, two series of benzotrithiophene (BTT) based organic compounds were designed to investigate their nonlinear optical (NLO) properties. The results showed that the thiophene-based derivatives (MS1-MS5) exhibited remarkable NLO properties compared to the pyrrole-based derivatives (MP1-MP5). Among all the derivatives, MS4 and MS5 showed the smallest energy gap and the highest nonlinear polarizations, suggesting their potential applications in NLO-based hi-tech devices.
To obtain extensive insights into NLO properties, herein, two series of benzotrithiophene (BTT) based organic compounds (MS1-MS5 and MP1-MP5) containing D-1-pi(1)-D-2-pi(2)-A-type framework have been designed. The structural tailoring was accomplished via the incorporation of thiophene and pyrrole units in MS1-MS5 and MP1-MP5, respectively at the region of pi(2) in each derivative. Quantum chemical calculations including: frontier molecular orbitals (FMOs), natural population analysis (NPA), UV-Vis investigation, transition density matrix (TDMx), density of state (DOS), molecular electrostatic potential (MEP) and natural bond orbitals (NBOs) analyses were accomplished at MPW1PW91/6-311G(d,p) functional to determine the influence of pi-linkers on the optical response of designed chromophores. Conclusively, remarkable NLO results were obtained for thiophene-based derivatives (MS1-MS5) as compared to pyrrole-based derivatives (MP1-MP5). Interestingly, among all the derivatives, minimum E-gap values of 2.248 and 2.264 eV were observed for MS4 and MS5, respectively, and the E-gap values were found in the following decreasing order: MS1>MS3>MS2>MS5>MS4. Surprisingly, MS4 and MS5 displayed maximum amplitudes of < alpha> i.e., 2.44 x 10(-22) and 2.65 x 10(-22) esu as well as < gamma> such as: 3.91 x 10(-32) and 4.35 x 10(-32) esu, respectively. Moreover, the declining trend of < gamma> was observed as follows: MS5 > MS4 > MS2 > MS3 > MS1. In a nutshell, this investigation may provide a new insight for the use of these BTT-based organic chromophores especially MS4 and MS5 for potential NLO-based hi-tech applications.

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