Tunable nonlinear optical properties in polyaniline-multiwalled carbon nanotube (PANI-MWCNT) system probed under pulsed Nd:YAG laser

Roshan Joseph Mathew , Arun R Chandran , Syam kishor K S , Lyjo K Joseph , K J Saji , U S Sajeev
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Abstract

The investigation of the nonlinear optical (NLO) properties of polyaniline (PANI) and polyaniline doped with multi-walled carbon nanotube (PANI-MWCNT) in both solution and film forms was conducted using the open-aperture z-scan approach. A Q-switched resonant Nd: YAG laser with a wavelength of 532 nm and two different fluences was utilized in this study. Based on the z-scan experiments, it was observed that the NLO behaviour of PANI and PANI-MWCNT composites exhibited a transition from reverse saturable absorption (RSA) to saturable absorption (SA) when the samples changed from a liquid to a film state. Two photon absorption (TPA) and thermally induced nonlinear scattering are the main mechanisms behind the RSA behaviour of the materials in solution form. The reason for SA behaviour of these materials in film form is attributed as the ground-state free electron bleaching in the conduction band due to the increased laser intensity. Due to increased structural disorder and the defect states or trap levels created by the dopants in the PANI system, the NLO properties of the PANI-MWCNT composite in both solution and film forms have significantly improved compared to those of pure PANI. Urbach tail analysis and carbon cluster determination revealed the presence of defect states in the composites system. The composite of PANI and MWCNT was verified using Fourier transform infrared (FTIR) spectroscopy. The functional elements present in the composites are verified by X-ray photoelectron spectroscopy. The NLO parameters of the samples, viz., the nonlinear absorption coefficient (β), the imaginary part of the nonlinear susceptibility χi(3) , and the figure of merit (FOM) of PANI-MWCNT, exhibited a notable enhancement in their values over PANI. Moreover, the PANI-MWCNT film demonstrated superior SA performance and the PANI-MWCNT solution demonstrated better OL performance compared to that of the PANI film and solution respectively. Also the effects of dopant induced structural modifications and lattice disorder on the NLO behaviour of these materials are correlated with the obtained NLO parameters. The tunable NLO properties accomplished by controlling the structural phase and dopant-induced defects enhance the possibility of these nanostructures for applications in optical limiting, optical switching, optical modulation, optical pulse compression and laser pulse narrowing.
脉冲Nd:YAG激光探测聚苯胺-多壁碳纳米管(PANI-MWCNT)体系的非线性光学特性
采用开孔z扫描方法研究了聚苯胺(PANI)和聚苯胺掺杂多壁碳纳米管(PANI- mwcnt)在溶液和薄膜形式下的非线性光学(NLO)性质。本研究采用波长为532 nm的调q谐振Nd: YAG激光器,采用两种不同的影响。通过z扫描实验发现,当样品由液态变为薄膜态时,聚苯胺和聚苯胺- mwcnt复合材料的NLO行为发生了从反饱和吸收(RSA)到饱和吸收(SA)的转变。双光子吸收(TPA)和热致非线性散射是溶液形式下材料的RSA行为背后的主要机制。这些材料在薄膜形式下的SA行为的原因是由于激光强度的增加导致基态自由电子在导带中漂白。由于PANI体系中掺杂物增加了结构紊乱和缺陷状态或陷阱水平,与纯PANI相比,PANI- mwcnt复合材料在溶液和薄膜形式下的NLO性能都得到了显著改善。乌尔巴赫尾分析和碳簇测定揭示了复合材料体系中存在缺陷态。利用傅里叶变换红外光谱(FTIR)对聚苯胺与MWCNT的复合材料进行了验证。用x射线光电子能谱对复合材料中的功能元素进行了验证。样品的NLO参数,即非线性吸收系数(β),非线性磁化率的虚部χi(3),以及PANI- mwcnt的优值(FOM)的值都比PANI有显著的提高。此外,与PANI膜和溶液相比,PANI- mwcnt膜表现出更优异的SA性能,PANI- mwcnt溶液表现出更好的OL性能。此外,掺杂引起的结构修饰和晶格无序对这些材料的NLO行为的影响与得到的NLO参数相关。通过控制结构相位和掺杂剂诱导缺陷实现的可调谐NLO特性增强了这些纳米结构在光限制、光开关、光调制、光脉冲压缩和激光脉冲狭窄等方面应用的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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