Affiliation:
1. Vavilov State Optical Institute, Kadetskaya Liniya V.O. 5/2, 199053 St. Petersburg, Russia
2. Department of Photonics, St. Petersburg Electrotechnical University (“LETI”), ul. Prof. Popova 5, 197376 St. Petersburg, Russia
3. Petersburg Nuclear Physics Institute, Part of Kurchatov National Research Center, 1 md. Orlova Roshcha, 188300 Gatchina, Russia
Abstract
Due to the high demand for optoelectronics for use in new materials and processes, as well as the search for their modeling properties, the expansion of the functionality of modified materials using nanotechnology methods is relevant and timely. In the current paper, a specific nanotechnology approach is shown to increase the refractive and photoconductive parameters of the organic conjugated materials. The sensitization process, along with laser treatment, are presented in order to improve the basic physical–chemical properties of laser, solar energy, and general photonics materials. Effective nanoparticles, such as fullerenes, shungites, reduced graphene oxides, carbon nanotubes, etc., are used in order to obtain the bathochromic shift, increase the laser-induced change in the refractive index, and amplify the charge carrier mobility of the model matrix organics sensitized with these nanoparticles. The four-wave mixing technique is applied to test the main refractive characteristics of the studied materials. Volt–current measurements are used to estimate the increased charge carrier mobility. The areas of application for the modified nanostructured plastic matrixes are discussed and extended, while also taking into account the surface relief.
Subject
Polymers and Plastics,General Chemistry
Reference90 articles.
1. Gutman, F., and Lyons, L.E. (1967). Organic Semiconductors, J. Wiley & Sons.
2. Structure and nonlinear optical properties of copper phthalocyanine thin films;Chollet;Proc. SPIE,1990
3. Optical limiting of C60, C60 charge-transfer complexes, and higher fullerenes from 532 to 750 nm;Heflin;Proc. SPIE,1995
4. Nonlinear optical properties of fullerenes;Kajzar;Synth. Met.,1996
5. Coherent beam amplification with a photorefractive liquid crystal;Khoo;Opt. Lett.,1997
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献