Journal of Photochemistry and Photobiology A: Chemistry, Volume (435), Year (2022-9)

Title : ( Theoretical evaluation of charge transport properties and mobility of tetraphenyldipyranylidene derivatives in organic field-effect transistors )

Authors: samira naserian maghani , Mohammad Izadyar , Elnaz Ranjbakhsh ,

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Abstract

Density functional theory calculations were performed to calculate the structural, electronic, physical, and hole/electron charge transport properties of three possible pathways of Tetraphenyldipyranylidene (DPPh) derivatives including electron-acceptor atoms and electron-donor groups as the organic semiconductors in organic field-effect transistors (OFETs). Additionally, the reduced density gradient-based non-covalent interaction (RDG-NCI) analysis was performed to investigate the presence of non-covalent intermolecular interactions. The results of electronic and physical properties show that all compounds are stable in environmental conditions and intermolecular interactions between the three possible dimers of each compound are different. The maximum mobility (µ(max)) and anisotropic mobility (µφ(max)) of the hole (0.16 cm2 V−1 s−1) is greater than that of the electron in DPPh, which is in good agreement with the experiment. The mobility of the hole decreases by introducing the electron-acceptor atoms and electron-donor groups. However, µ(max) and µφ(max) values of the electron in the case of DPPh derivatives increase including C(CH3)3, Br, OCH3, CH3, Cl, and –OCH2CH3, respectively. According to different analyses, DPPh-CH3, DPPh-C(CH3)3, DPPh-Br, and DPPh-Cl semiconductors are proposed as the preferred candidates for use in the OFET devices.

Keywords

, Semiconducting performance Charge transport properties Maximum mobility Anisotropic mobility RDG, NCI analysis
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@article{paperid:1091521,
author = {Naserian Maghani, Samira and Izadyar, Mohammad and Ranjbakhsh, Elnaz},
title = {Theoretical evaluation of charge transport properties and mobility of tetraphenyldipyranylidene derivatives in organic field-effect transistors},
journal = {Journal of Photochemistry and Photobiology A: Chemistry},
year = {2022},
volume = {435},
month = {September},
issn = {1010-6030},
keywords = {Semiconducting performance Charge transport properties Maximum mobility Anisotropic mobility RDG-NCI analysis},
}

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%0 Journal Article
%T Theoretical evaluation of charge transport properties and mobility of tetraphenyldipyranylidene derivatives in organic field-effect transistors
%A Naserian Maghani, Samira
%A Izadyar, Mohammad
%A Ranjbakhsh, Elnaz
%J Journal of Photochemistry and Photobiology A: Chemistry
%@ 1010-6030
%D 2022

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