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Nonlinear Optical Studies of Conjugated Organic Dyes for Optical Limiting Applications

机译:用于光学限制应用的共轭有机染料的非线性光学研究

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D-pi-A conjugated organic dyes made of different donor/acceptor moieties namely Hexylcarbazole (HC), 4,7-Dithiophene-2-yl) benzo[c][1,2,5]thiadiazole (DTBT) and Poly-4-(5-(9-Hexyl-9H-carbazol-2-yl)thiophen-2-yl)benzo[c][1,2,5]thiadiazole (PCTB) were prepared by coupling reactions. FTIR, NMR, and mass spectrometry were used to determine the molecular structure of synthesized compounds. Both HC and DTBT show a wide optical transmittance window (400-600 nm) with absorption maxima in the UV region. However, PCTB shows an altered band structure with a broad absorption in the visible domain (448 nm). Density functional theory (DFT) calculations expose that the bandgap between HOMO and LUMO decreases as the conjugation extends, and redshift occurs in UV-Vis absorption spectra. The emission spectrum of PCBT shows strong emission maxima at 541 nm with the corresponding large Stokes shift 3837 cm(-1) due to its enhanced charge transfer property in the excited state. Nonlinear optical absorption was studied by open-aperture Z-scan technique using Nd:YAG laser (532 nm, 10 Hz, 9 ns). Here HC, DTBT exhibit a genuine two-photon absorption (TPA) process while PCTB possesses sequential TPA involving excited-state absorption. All dyes exhibit energy-absorbing optical limiting behaviour ascribed due to the two-photon absorption process. Among the investigated dyes, PCTB polymer shows a higher TPA coefficient (1.22 x 10(-10) m/W) and a lower onset optical limiting threshold (1.06 x 10(12) W/m(2)). Thus, the tunability of band structure and nonlinearity with a change in the molecular arrangement was successfully demonstrated in thiophene-benzothiadiazole-based organic dyes. (C) 2021 Elsevier B.V. All rights reserved.
机译:通过偶联反应制备了由不同的给体/受体组成的D-pi-A共轭有机染料,即己基咔唑(HC)、4,7-二噻吩-2-基)苯并[c][1,2,5]噻二唑(DTBT)和聚-4-(5-(9-己基-9H-咔唑-2-基)噻吩-2-基)苯并[c][1,2,5]噻二唑(PCTB)。FTIR、NMR和质谱用于确定合成化合物的分子结构。HC和DTBT都显示出较宽的光学透射窗口(400-600 nm),吸收最大值出现在UV区域。然而,PCTB的能带结构发生了改变,在可见光区(448 nm)有很宽的吸收。密度泛函理论(DFT)计算表明,HOMO和LUMO之间的带隙随着共轭的扩展而减小,并且在紫外-可见吸收光谱中发生红移。PCBT的发射光谱在541nm处显示出强烈的发射最大值,由于其在激发态中增强的电荷转移特性,相应的斯托克斯位移为3837cm(-1)。用Nd:YAG激光(532nm,10Hz,9ns)开孔Z扫描技术研究了非线性光学吸收。在这里,HC、DTBT表现出真正的双光子吸收(TPA)过程,而PCTB具有涉及激发态吸收的顺序TPA。由于双光子吸收过程,所有染料都表现出能量吸收光限幅行为。在所研究的染料中,PCTB聚合物表现出较高的TPA系数(1.22 x 10(-10)m/W)和较低的起始光限幅阈值(1.06 x 10(12)W/m(2))。因此,在基于噻吩-苯并噻二唑的有机染料中,成功地证明了带结构和非线性随分子排列变化的可调谐性。(c)2021爱思唯尔B.V.保留所有权利。

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