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用于光电应用的聚吡咯衍生物:侧基影响的密度泛函理论研究

Polypyrrole derivatives for optoelectronic applications: a DFT study on the influence of side groups.

作者信息

Coleone Alex Pifer, Lascane Leonardo Gois, Batagin-Neto Augusto

机构信息

São Paulo State University (UNESP), Faculty of Sciences, POSMAT, Campus of Bauru, Bauru, SP, Brazil.

出版信息

Phys Chem Chem Phys. 2019 Aug 15;21(32):17729-17739. doi: 10.1039/c9cp02638j.

Abstract

Conjugated organic polymers have been considered interesting materials for various technological applications, mainly due to their unique optoelectronic properties and the variety of methods employed in their synthesis. In this context, polypyrrole (PPy) derivatives have been widely employed. The great versatility of synthesis of this material allows the production of a number of derivatives with distinct properties, allowing their application in several areas. In this report, aiming to guide the design of compounds with specific features, electronic structure calculations were conducted to evaluate the influence of side groups in the structural, optical and electronic properties of PPy derivatives. The calculations were carried out for oligomeric systems in the framework of density functional theory. Preliminary benchmark studies were conducted by employing two distinct functionals for geometry optimization and evaluation of optoelectronic properties. Comparative studies of the bond length alternation, spatial and energetic distribution of the frontier orbitals, electronic gaps, exciton binding energies, optical absorption spectra and electronic density of states were conducted for each derivative and the influence of the side groups was discussed in terms of their electron donation/withdrawing properties. A set of simple rules (linear equations) was proposed for the prediction of optoelectronic properties of PPy derivatives. In particular, the results have shown that simple Hammett parameters of side groups are sufficient to enable the design of improved materials.

摘要

共轭有机聚合物因其独特的光电特性以及合成中采用的多种方法,一直被视作适用于各种技术应用的有趣材料。在此背景下,聚吡咯(PPy)衍生物得到了广泛应用。这种材料合成的高度通用性使得能够生产出许多具有不同特性的衍生物,从而使其能应用于多个领域。在本报告中,为指导具有特定特征的化合物设计,进行了电子结构计算,以评估侧基对PPy衍生物结构、光学和电子性质的影响。计算是在密度泛函理论框架下针对低聚体系进行的。通过采用两种不同的泛函进行几何优化和光电性质评估,开展了初步的基准研究。对每种衍生物进行了键长交替、前沿轨道的空间和能量分布、电子能隙、激子结合能、光吸收光谱以及态密度电子密度的比较研究,并根据侧基的给电子/吸电子性质讨论了其影响。提出了一组简单规则(线性方程)用于预测PPy衍生物的光电性质。特别是,结果表明侧基的简单哈米特参数足以实现改进材料的设计。

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