Faculty of Physics, ''Alexandru Ioan Cuza'' University of Iasi, 11 Carol I Blvd., RO-700506 Iasi, Romania.
Faculty of Automatic Control and Computer Engineering, ''Gheorghe Asachi'' Technical University, 67 Dimitrie Mangeron Blvd., RO-700050 Iasi, Romania.
Molecules. 2023 Mar 26;28(7):2955. doi: 10.3390/molecules28072955.
Optical polymers are recognized for their high transparency, raised flexibility, low cost, and good film-forming ability; hence, they introduce a multitude of benefits in a wide range of devices, such as information storage, displays, optical communications, and filters. Among the optical properties, birefringence is an essential parameter in practical cases that demand the control of the state of polarization of light. This review is focused on describing some fundamental and applicative aspects concerning the optical birefringence of the polymer materials. First, elementary notions depicting the phenomenon of light double refraction in macromolecular media are provided. Furthermore, the most relevant optical techniques to determine birefringence are reviewed by highlighting the working principle and mathematical basis for computing this parameter. Then, a series of investigations of optically birefringent polymers are described, summarizing the most utilized approaches to induce light double refraction in such materials. The selected results are analyzed in relation to the pursued applications. In the end, the future of this scientific domain is briefly presented by establishing the research paths that need further exploration. Moreover, the novel directions that could be formulated and might contribute to certain considerable advancements in the materials employed in the modern optical technologies are mentioned.
光学聚合物因其高透明度、高柔韧性、低成本和良好的成膜能力而受到认可;因此,它们在信息存储、显示器、光通信和滤波器等各种设备中带来了多种好处。在光学性质中,双折射是实际应用中控制光偏振状态的一个重要参数。本综述重点描述了与聚合物材料的光学双折射有关的一些基本和应用方面。首先,提供了描述高分子介质中光双折射现象的基本概念。此外,通过突出计算该参数的工作原理和数学基础,回顾了确定双折射的最相关的光学技术。然后,描述了一系列对光学双折射聚合物的研究,总结了在这些材料中诱导光双折射的最常用方法。根据所追求的应用,分析了所选结果。最后,通过确定需要进一步探索的研究路径,简要介绍了该科学领域的未来。此外,还提到了可能制定的新方向,并可能有助于在现代光学技术中使用的材料取得某些重大进展。