Kamanina Natalia
Joint Stock Company Scientific and Production Corporation S.I. Vavilov State Optical Institute, Babushkina Str. dom 36, Korpus 1, St. Petersburg 192171, Russia.
Vavilov State Optical Institute, Kadetskaya Liniya V.O., dom 5, Korpus 2, St. Petersburg 199053, Russia.
Polymers (Basel). 2024 Sep 19;16(18):2645. doi: 10.3390/polym16182645.
A large number of the thin-film organic structures (polyimides, 2-cyclooctylarnino-5-nitropyridine, N-(4-nitrophenyl)-(L)-prolinol, 2-(n-Prolinol)-5-nitropyridine) sensitized with the different types of the nano-objects (fullerenes, carbon nanotubes, quantum dots, shungites, reduced graphene oxides) are presented, which are studied using the holographic technique under the Raman-Nath diffraction conditions. Pulsed laser irradiation testing of these materials predicts a dramatic increase of the laser-induced refractive index, which is in several orders of the magnitude greater compared to pure materials. The estimated nonlinear refraction coefficients and the cubic nonlinearities for the materials studied are close to or larger than those known for volumetric inorganic crystals. The role of the intermolecular charge transfer complex formation is considered as the essential in the refractivity increase in nano-objects-doped organics. As a new idea, the shift of charge from the intramolecular donor fragment to the intermolecular acceptors can be proposed as the development of Janus particles. The energy losses via diffraction are considered as an additional mechanism to explain the nonlinear attenuation of the laser beam.
本文展示了大量用不同类型纳米物体(富勒烯、碳纳米管、量子点、水云母、还原氧化石墨烯)敏化的薄膜有机结构(聚酰亚胺、2-环辛基氨基-5-硝基吡啶、N-(4-硝基苯基)-(L)-脯氨醇、2-(正脯氨醇)-5-硝基吡啶),并在拉曼-纳特衍射条件下使用全息技术对其进行了研究。对这些材料的脉冲激光辐照测试表明,激光诱导折射率显著增加,与纯材料相比,增加了几个数量级。所研究材料的估计非线性折射系数和三次非线性与已知的体无机晶体相近或更大。分子间电荷转移复合物的形成被认为是纳米物体掺杂有机物折射率增加的关键因素。作为一个新观点,电荷从分子内供体片段转移到分子间受体可以被认为是双面粒子发展的一种情况。通过衍射的能量损失被认为是解释激光束非线性衰减的另一种机制。