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基于α和β变体的D-π-A型氰基芪系统的结构和光学性质的理论见解

Theoretical Insights into the Structural and Optical Properties of D-π-A-based Cyanostilbene Systems of α and β Variants.

作者信息

Femina Cherumannil, Sajith Pookkottu K, Remya Karunakaran, Thomas Reji, Solomon Rajadurai Vijay

机构信息

Department of Chemistry, Farook College (Autonomous), (Affiliated to the University of Calicut), Kozhikode 673632, Kerala, India.

Government Women's Polytechnic College, Kozhikode 673009, Kerala, India.

出版信息

ACS Omega. 2024 May 15;9(21):22764-22776. doi: 10.1021/acsomega.4c00850. eCollection 2024 May 28.

Abstract

The π-conjugated organic molecules containing cyanostilbene motifs have been extensively investigated due to their great potential applications in several optoelectronic and biological fields. Developing efficient molecules in this respect requires strategic structural engineering and a deep understanding of the structure-property relationship at the molecular level. In this context, understanding the impact of positional isomerism in cyanostilbene systems is a fundamental aspect of designing desired materials with improved photophysical properties. Herein, we designed ten donor-π-acceptor (D-π-A) type cyanostilbene derivatives ( - ) with different π linkers and compared their structural and optoelectronic properties arising from the positional variations of the -CN group (α and β- variations) through the utilization of density functional theory (DFT) and time-dependent DFT (TDDFT) methods. The topological analyses of the electron density are used to explain the relatively high stability of α isomer compared to that of β. Frontier molecular orbital analysis reveals that 17 molecules tend to show a reduced highest occupied molecular orbital-lowest unoccupied molecular orbital gap, and most of them showed a greater nonlinear optical (NLO) character compared to the parent molecule. TDDFT calculations indicate that β isomers show higher absorption maxima compared to their α counterparts. Among all the scrutinized molecules, the absorption maximum extended up to 602 nm for and it possesses the highest first-order hyperpolarizability. This study sheds light on positional isomers and their reactivity, absorption spectra, and NLO properties of D-π-A type architecture that can be suitably tuned by appropriating the π-bridge for practical applications.

摘要

由于含氰基二苯乙烯基序的π共轭有机分子在多个光电和生物领域具有巨大的潜在应用价值,因此受到了广泛研究。在这方面开发高效分子需要进行策略性的结构工程设计,并深入理解分子水平上的结构-性质关系。在此背景下,了解氰基二苯乙烯体系中位置异构的影响是设计具有改善光物理性质的理想材料的一个基本方面。在此,我们设计了十种具有不同π连接基的供体-π-受体(D-π-A)型氰基二苯乙烯衍生物( - ),并通过利用密度泛函理论(DFT)和含时密度泛函理论(TDDFT)方法,比较了由于-CN基团位置变化(α和β-变化)而产生的结构和光电性质。电子密度的拓扑分析用于解释α异构体相对于β异构体具有较高稳定性的原因。前线分子轨道分析表明,17种分子倾向于显示出减小的最高占据分子轨道-最低未占据分子轨道能隙,并且与母体分子相比,它们中的大多数表现出更大的非线性光学(NLO)特性。TDDFT计算表明,β异构体的吸收最大值高于其α对应物。在所有被研究的分子中, 的吸收最大值扩展到602 nm,并且它具有最高的一阶超极化率。这项研究揭示了位置异构体及其反应性、吸收光谱以及D-π-A型结构的NLO性质,这些性质可以通过适当地调整π桥来进行实际应用中的合适调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c817/11137715/83b28b80b4af/ao4c00850_0001.jpg

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