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

Author:

Dorohoi Dana Ortansa1,Postolache Mihai2ORCID,Nechifor Cristina Delia3,Dimitriu Dan Gheorghe1ORCID,Albu Raluca Marinica4ORCID,Stoica Iuliana4ORCID,Barzic Andreea Irina4ORCID

Affiliation:

1. Faculty of Physics, ‘‘Alexandru Ioan Cuza’’ University of Iasi, 11 Carol I Blvd., RO-700506 Iasi, Romania

2. Faculty of Automatic Control and Computer Engineering, ‘‘Gheorghe Asachi’’ Technical University, 67 Dimitrie Mangeron Blvd., RO-700050 Iasi, Romania

3. Faculty of Machine Manufacturing and Industrial Management, ‘‘Gheorghe Asachi’’ Technical University, 67 Dimitrie Mangeron Blvd., RO-700050 Iasi, Romania

4. Department of Physical Chemistry of Polymers, ‘‘Petru Poni” Institute of Macromolecular Chemistry, 41A Grigore Ghica Voda Alley, RO-700487 Iasi, Romania

Abstract

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.

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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