4.6 Review

Review on Optical Methods Used to Characterize the Linear Birefringence of Polymer Materials for Various Applications

Journal

MOLECULES
Volume 28, Issue 7, Pages -

Publisher

MDPI
DOI: 10.3390/molecules28072955

Keywords

optical polymers; linear birefringence; optical methods; applications

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Optical polymers have various advantages in devices like information storage, displays, optical communications, and filters due to their high transparency, flexibility, low cost, and film-forming ability. This review focuses on the optical birefringence of polymer materials, including the phenomenon of light double refraction, techniques to determine birefringence, and approaches to induce double refraction. The future of this field and potential advancements in materials for optical technologies are also briefly discussed.
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.

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