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聚合对D-A型三苯胺衍生物单(双)光子吸收过程中电荷转移机制的影响

Effect of Polymerization on the Charge-Transfer Mechanism in the One (Two)-Photon Absorption Process of D-A-Type Triphenylamine Derivatives.

作者信息

Wei Jia, Li Yuanzuo, Song Peng, Yang Yanhui, Ma Fengcai

机构信息

College of Science, Northeast Forestry University, Harbin, 150040 Heilongjiang, China.

Department of Physics, Liaoning University, Shenyang, 110036 Liaoning, China.

出版信息

J Phys Chem A. 2021 Jan 28;125(3):777-794. doi: 10.1021/acs.jpca.0c09309. Epub 2021 Jan 12.

Abstract

To investigate the effect of polymerization ( = 1, 2, 3, and 4) on the charge-transfer (CT) mechanisms in the one (two)-photon absorption (OPA and TPA) process of D-A-type triphenylamine derivatives, charge density difference is used to graphically represent the CT characteristics. A transition density matrix is utilized to reveal the direction of CT on different groups quantitatively. With the increasing, electrons are mainly transferred between the groups in the middle position of the molecular chain during OPA and TPA processes. Simulated results show that the energy gap and excitation energy have a good linear relationship with the reciprocal of the polymerization degree. Importantly, the polymerization effect can effectively increase the electronic transmission capability, TPA performance, and second hyperpolarizability. Besides, the simplified sum over state model reveals the variation factor of the TPA cross-section and the second static hyperpolarizability. The McRae formula and Bakhshiev formula are used to estimate the difference of dipole moments, which is an important parameter of the second hyperpolarizability. The comprehensive analysis of the nonlinear optical (NLO) parameters of triphenylamine derivatives can provide some significant guidance for molecular design and improve the NLO performance of D-A molecular materials. Also, the thermodynamic parameters can provide some theoretical supports for solving practical problems.

摘要

为了研究聚合度(=1、2、3和4)对D - A型三苯胺衍生物单(双)光子吸收(OPA和TPA)过程中电荷转移(CT)机制的影响,采用电荷密度差来直观表示CT特性。利用跃迁密度矩阵定量揭示不同基团上CT的方向。随着聚合度增加,在OPA和TPA过程中,电子主要在分子链中间位置的基团之间转移。模拟结果表明,能隙和激发能与聚合度的倒数具有良好的线性关系。重要的是,聚合效应可以有效提高电子传输能力、TPA性能和二阶超极化率。此外,简化的态求和模型揭示了TPA截面和二阶静态超极化率的变化因素。使用McRae公式和Bakhshiev公式估计偶极矩的差异,偶极矩是二阶超极化率的一个重要参数。对三苯胺衍生物非线性光学(NLO)参数的综合分析可为分子设计提供一些重要指导,并提高D - A分子材料的NLO性能。此外,热力学参数可为解决实际问题提供一些理论支持。

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