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Electron Donor and Acceptor Influence on the Nonlinear Optical Response of Diacetylene-Functionalized Organic Materials (DFOMs): Density Functional Theory Calculations

机译:电子给体和受体对联乙炔功能化有机材料(DFOM)非线性光学响应的​​影响:密度泛函理论计算

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摘要

Herein, we report the quantum chemical results based on density functional theory for the polarizability (α) and first hyperpolarizability (β) values of diacetylene-functionalized organic molecules (DFOM) containing an electron acceptor (A) unit in the form of nitro group and electron donor (D) unit in the form of amino group. Six DFOM >1–>6 have been designed by structural tailoring of the synthesized chromophore 4,4′-(buta-1,3-diyne-1,4-diyl) dianiline (>R) and the influence of the D and A moieties on α and β was explored. Ground state geometries, HOMO-LUMO energies, and natural bond orbital (NBO) analysis of all DFOM (>R and >1–>6) were explored through B3LYP level of DFT and 6-31G(d,p) basis set. The polarizability (α), first hyperpolarizability (β) values were computed using B3LYP (gas phase), CAM-B3LYP (gas phase), CAM-B3LYP (solvent DMSO) methods and 6-31G(d,p) basis set combination. UV-Visible analysis was performed at CAM-B3LYP/6-31G(d,p) level of theory. Results illustrated that much reduced energy gap in the range of 2.212–2.809 eV was observed in designed DFOM >1–>6 as compared to parent molecule >R (4.405 eV). Designed DFOM (except for >2 and >4) were found red shifted compared to parent molecule >R. An absorption at longer wavelength was observed for >6 with 371.46 nm. NBO analysis confirmed the involvement of extended conjugation and as well as charge transfer character towards the promising NLO response and red shift of molecules under study. Overall, compound >6 displayed large <α> and βtot, computed to be 333.40 (a.u.) (B3LYP gas), 302.38 (a.u.) (CAM-B3LYP gas), 380.46 (a.u.) (CAM-B3LYP solvent) and 24708.79 (a.u.), 11841.93 (a.u.), 25053.32 (a.u.) measured from B3LYP (gas), CAM-B3LYP (gas) and CAM-B3LYP (DMSO) methods respectively. This investigation provides a theoretical framework for conversion of centrosymmetric molecules into non-centrosymmetric architectures to discover NLO candidates for modern hi-tech applications.
机译:本文中,我们基于密度泛函理论报告了以乙炔基形式包含电子受体(A)单元的乙炔官能化有机分子(DFOM)的极化率(α)和第一超极化率(β)值的量子化学结果。氨基形式的电子给体(D)单元。通过合成的生色团4,4'-(buta-1,3-diyne-1,4-diyl)dianiline的生色团的结构剪裁设计了六个DFOM > 1 – > 6 (> R )以及D和A部分对α和β的影响。探索了所有DFOM(> R 和> 1 – > 6 )的基态几何,HOMO-LUMO能量和自然键轨道(NBO)分析通过DFT的B3LYP级别和6-31G(d,p)基集。使用B3LYP(气相),CAM-B3LYP(气相),CAM-B3LYP(溶剂DMSO)方法和6-31G(d,p)基组组合计算极化率(α),第一超极化率(β)值。在CAM-B3LYP / 6-31G(d,p)的理论水平上进行UV-可见分析。结果表明,与母体分子> R 相比,设计的DFOM > 1 – > 6 中观察到的能隙大大减小,为2.212–2.809 eV。 (4.405 eV)。与母体分子> R 相比,发现设计的DFOM(> 2 和> 4 除外)发生了红移。对于> 6 ,在371.46 nm处观察到更长波长的吸收。 NBO分析证实了延长的共轭作用以及电荷转移特性对有希望的NLO反应和正在研究的分子的红移的影响。总体而言,化合物> 6 显示出较大的<α>和βtot,计算得出为333.40(au)(B3LYP气体),302.38(au)(CAM-B3LYP气体),380.46(au)(CAM-B3LYP溶剂)和24708.79(au),1181.93(au),25053.32(au)分别通过B3LYP(气体),CAM-B3LYP(气体)和CAM-B3LYP(DMSO)方法测得。这项研究为将中心对称分子转化为非中心对称结构提供了理论框架,以发现用于现代高科技应用的NLO候选物。

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