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Conjugates of thermally stable phthalocyanine J-type dimers with single-walled carbon nanotubes for enhanced optical limiting applications

机译:具有单壁碳纳米管的热稳定的酞菁J型二聚体的缀合物,用于增强光学限制性应用

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The widespread application of laser devices requires development of new protections against light pulses of high intensity. This problem is relevant because of the danger of hitting the civil aviation pilots with bright and powerful radiation originating from the laser sources which are widely used in the everyday life. Therefore, this work is devoted to continuing our research on a new class of macroheterocyclic compounds - thermally and chemically stable J-type phthalocyanine dimers as potential nonlinear absorbers for optical limiting technology. The dimeric complexes of magnesium (1a) and zinc (1b) were covalently bonded to single-walled carbon nanotubes (SWCNTs) to improve the overall characteristics of the potential optical limiters 2a,b as compared to the previously studied corresponding dyes in solutions. The conjugates obtained were investigated using atomic force microscopy (AFM), as well as Raman and IR spectroscopy to confirm formation of the covalent binding of phthalocyanine macrocycles with the carbon surface. Open-aperture Z-scan and a fixed limiter location experiments have demonstrated low values of the limiting threshold and high degree of attenuation of the input laser radiation with the pulses duration located in the nanosecond range.
机译:激光器件的广泛应用需要开发用于高强度的光脉冲的新保护。这个问题是相关的,因为占据了来自日常生活中广泛应用的激光源的明亮和强大的辐射的民用航空飞行员的危险。因此,这项工作致力于继续我们对新一类大类的致癌族化合物 - 热和化学稳定的J型酞菁二聚体作为光学限制性技术的潜在非线性吸收剂。与先前研究的溶液中先前研究的相应染料相比,与单壁碳纳米管(SWCNTS)共价键合至单壁碳纳米管(SWCNT),以改善潜在光学器纳米纳米管2a,b的整体特征。使用原子力显微镜(AFM)以及Raman和IR光谱研究获得的缀合物,以确认形成具有碳表面的酞菁大键的共价结合。开放式孔径Z扫描和固定限制器定位实验已经证明了限制阈值的低值,并且输入激光辐射的高度衰减,其中脉冲持续时间位于纳秒范围内。

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