Kothoori Naga Pranava Sree, Sivasakthi Pandiyan, Baithy Mallesham, Misra Ramprasad, Samanta Pralok K
Department of Chemistry, School of Science, Gandhi Institute of Technology and Management (GITAM) Hyderabad-502329 India
Department of Chemistry, Birla Institute of Technology and Science Pilani (BITS Pilani), Hyderabad Campus Hyderabad-500078 India.
RSC Adv. 2024 May 16;14(22):15560-15570. doi: 10.1039/d4ra02861a. eCollection 2024 May 10.
Intramolecular charge transfer (ICT)-based chromophores are highly sought after for designing near-infrared (NIR) absorbing and emitting dyes as well as for designing materials for nonlinear optical (NLO) applications. The properties of these 'push-pull' molecules can easily be modified by varying the electronic donor (D) and acceptor (A) groups as well as the π-conjugation linker. This study presents a methodical approach and employs quantum chemical analysis to explore the relationship between the structural features, electro-optical properties, and the NLO characteristics of molecules with D-π-A framework. The one- and two-photon absorption (2PA), linear polarizability (), and first hyperpolarizability () of some novel chromophores, consisting of a dimeric aza-Boron Dipyrromethene (aza-BODIPY) analogue, called, pyrrolopyrrole aza-BODIPY (PPAB), serving as the acceptor, have been investigated. The electronic donors used in this study are triphenylamine (TPA) and diphenylamine (DPA), and they are conjugated to the acceptor thienyl or phenylene π-linkers. Additionally, the Hyper-Rayleigh Scattering (), which enables direct estimation of the second-order NLO properties, is calculated for the studied chromophores with 1064 nm excitation in acetonitrile. The value shows a significant increase with increasing solvent polarity, indicating that the ICT plays a crucial role in shaping the NLO response of the studied molecules. The enhancement of the 2PA cross-section of the investigated molecules can also be achieved by modulating the combinations of donors and linkers. The results of our study indicate that the novel D-π-A molecules designed in this work demonstrate considerably higher hyperpolarizability values than the standard -nitroaniline, making them promising candidates for future NLO applications.
基于分子内电荷转移(ICT)的发色团在设计近红外(NIR)吸收和发射染料以及用于非线性光学(NLO)应用的材料方面备受追捧。通过改变电子供体(D)和受体(A)基团以及π共轭连接体,可以轻松改变这些“推-拉”分子的性质。本研究提出了一种系统的方法,并采用量子化学分析来探索具有D-π-A框架的分子的结构特征、电光性质和NLO特性之间的关系。研究了一些新型发色团的单光子和双光子吸收(2PA)、线性极化率()和第一超极化率(),这些发色团由一种称为吡咯并吡咯氮杂硼二吡咯烯(PPAB)的二聚氮杂硼二吡咯烯(aza-BODIPY)类似物作为受体组成。本研究中使用的电子供体是三苯胺(TPA)和二苯胺(DPA),它们与受体噻吩基或亚苯基π连接体共轭。此外,还计算了在乙腈中用1064 nm激发的研究发色团的超瑞利散射(),它能够直接估计二阶NLO性质。值随着溶剂极性的增加而显著增加,表明ICT在塑造研究分子的NLO响应中起着关键作用。通过调节供体和连接体的组合,也可以提高所研究分子的2PA截面。我们的研究结果表明,本工作中设计的新型D-π-A分子表现出比标准对硝基苯胺高得多的超极化率值,使其成为未来NLO应用的有前途的候选者。