Determination of the Electronic Structure, Charge-transfer, and Optical Properties of Neutral, Anionic, and Cationic Perfluoropentacene

A. S. Gidado, Shahzia Kulsoom Ahmad, A. Musa, U.M. Ibrahim
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Abstract

Perfluoropentacene ( is an n-type organic semiconductor made by fluorination of p-type semiconductor Pentacene and can find applications in molecular thin film devices. In this work, a theoretical study of Perfluoropentacene was carried out based on density functional theory (DFT) and time dependent (TD-DFT) as implemented in Gaussian 09 package using B3LYP/6-311++G (d, p) and B3LYP/6-31+G(d) basis sets. The electronic, charge transfer, Linear and nonlinear optical properties of the molecule were calculated and reported for the neutral, anionic, and cationic forms of the molecule. The results show that the cationic state of the molecule has the strongest bond length at R(28,32) using the basis sets B3LYP/6-311++G (d,p) and the weakest bond length was found at R(4,6) in the ionic state with 6-31+G (d) basis set. The energy gap obtained for the neutral molecule using 6-31+G (d) and 6-311++G (d,p) basis sets are 2.00eV, 1.99eV respectively. The results show a strong agreement with a previously related work that reported the energy gap as 2.02eV thus indicating high stability of the molecule. Perfluoropentacene has the highest value of chemical hardness of 1.3929eV in its anionic state (Beta MO), so is considered to be harder and more stable than the neutral and cationic. The findings also revealed that with toluene as solvent, the strongest absorption was found at wavelength of 738.38, highest oscillator strength of 0.0599 and the lowest excitation energy of 1.6791eV. The calculated results of polarizability, first and second hyperpolarizability confirm that this molecule is a good non-linear optical material. On the whole, the molecule could be a good material for optoelectronic applications.
确定中性、阴离子和阳离子全氟并五苯的电子结构、电荷转移和光学特性
全氟并五苯(Perfluoropentacene)是一种 n 型有机半导体,由 p 型半导体并五苯氟化而成,可应用于分子薄膜器件。在这项工作中,基于密度泛函理论(DFT)和时间相关性(TD-DFT),使用 B3LYP/6-311++G (d, p) 和 B3LYP/6-31+G(d) 基集,在 Gaussian 09 软件包中对全氟并五苯进行了理论研究。计算并报告了分子的中性、阴离子和阳离子形式的电子、电荷转移、线性和非线性光学性质。结果表明,使用 B3LYP/6-311++G (d,p) 基集,分子阳离子态在 R(28,32) 处的键长最强,而使用 6-31+G (d) 基集,分子离子态在 R(4,6) 处的键长最弱。使用 6-31+G (d) 和 6-311++G (d,p) 基集得到的中性分子能隙分别为 2.00eV 和 1.99eV。这些结果与之前相关研究报告的能隙 2.02eV 非常吻合,从而表明该分子具有很高的稳定性。全氟并五苯在阴离子状态(β MO)下的化学硬度值最高,为 1.3929eV,因此被认为比中性和阳离子更坚硬、更稳定。研究结果还显示,以甲苯为溶剂时,波长为 738.38 的吸收最强,振子强度最高,为 0.0599,激发能最低,为 1.6791eV。极化率、第一和第二超极化率的计算结果证实该分子是一种良好的非线性光学材料。总的来说,该分子可能是一种很好的光电应用材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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