Khalid Muhammad, Shafiq Iqra, Asghar Muhammad Adnan, Braga Ataualpa Albert Carmo, Alshehri Saad M, Haroon Muhammad, Sanyang Muhammed Lamin
Institute of Chemistry, Khwaja Fareed University of Engineering & Information Technology, Rahim Yar Khan, 64200, Pakistan.
Centre for Theoretical and Computational Research, Khwaja Fareed University of Engineering & Information Technology, Rahim Yar Khan, 64200, Pakistan.
Sci Rep. 2023 Nov 16;13(1):20104. doi: 10.1038/s41598-023-44327-9.
In opto-electronics, non-fullerene (NF) derivatives are regarded as efficient non-linear optical (NLO) materials. The present investigation was based on designing NF naphthalene-based derivatives (PCMD1-D9) with D-π-A configuration from PCMR. DFT analysis at M06/6-311G (d,p) level was accomplished to explore the photonic behavior of PCMD1-D9 compounds. Various kind of analysis like; UV-Vis, density of state (DOS), natural bond orbitals (NBOs), transition density matrix (TDM) and frontier molecular orbitals (FMOs) analyses were accomplished to understand the NLO properties of said chromophores. The configuration change led to considerable charge distribution over highest occupied and lowest unoccupied molecular orbitals with minimum band difference. The energy gap trend for all the entitled compounds was observed as; PCMD8 < PCMD5 = PCMD9 < PCMD6 < PCMD7 < PCMD4 < PCMD3 < PCMD2 < PCMD1 with the least band gap of 2.048 eV in PCMD8 among all the compounds. The UV-Visible spectrum of the entitled chromophores manifested high values of λ in derivatives contrary to PCMR. Additionally, NBO findings explored effective intramolecular charge transfer and maximum energy of stabilization (34.31 kcal/mol) for PCMD8 chromophore. The highest linear polarizability (<α>) and dipole moment (µ) values were exhibited by PCMD5 at 2.712 × 10. and 1.995 × 10 esu, respectively. PCMD8 push-pull configured molecular entity exhibited highest first hyper-polarizability (β) at 4.747 × 10 esu and second hyper-polarizability at 6.867 × 10 esu. Overall, all the formulated chromophores exhibited significant NLO results contrary to PCMR. Hence, through this structural tailoring via various acceptors, effective NLO materials were obtained for optoelectronic applications.
在光电子学中,非富勒烯(NF)衍生物被视为高效的非线性光学(NLO)材料。本研究基于从PCMR设计具有D-π-A构型的NF萘基衍生物(PCMD1-D9)。在M06/6-311G(d,p)水平上进行了密度泛函理论(DFT)分析,以探索PCMD1-D9化合物的光子行为。完成了各种分析,如紫外可见光谱、态密度(DOS)、自然键轨道(NBO)、跃迁密度矩阵(TDM)和前沿分子轨道(FMO)分析,以了解所述发色团的NLO性质。构型变化导致最高占据分子轨道和最低未占据分子轨道上有相当大的电荷分布,且带隙最小。观察到所有所述化合物的能隙趋势为:PCMD8<PCMD5 = PCMD9<PCMD6<PCMD7<PCMD4<PCMD3<PCMD2<PCMD1,其中PCMD8的带隙最小,为2.048 eV。与PCMR相反,所述发色团的紫外可见光谱在衍生物中表现出较高的λ值。此外,NBO研究结果表明PCMD8发色团存在有效的分子内电荷转移和最大稳定能(34.31 kcal/mol)。PCMD5分别在2.712×10和1.995×10 esu时表现出最高的线性极化率(<α>)和偶极矩(µ)值。PCMD8推挽构型的分子实体在4.747×10 esu时表现出最高的第一超极化率(β),在6.867×10 esu时表现出第二超极化率。总体而言,与PCMR相比,所有配制的发色团均表现出显著的NLO结果。因此,通过经由各种受体进行这种结构剪裁,获得了用于光电子应用的有效NLO材料。