Aziz Shujahadeen B, Brza M A, Nofal Muaffaq M, Abdulwahid Rebar T, Hussen Sarkawt A, Hussein Ahang M, Karim Wrya O
Advanced Polymeric Materials Research Lab., Department of Physics, College of Science, University of Sulaimani, Qlyasan Street, Sulaimani 46001, Kurdistan Regional Government, Iraq.
Department of Civil Engineering, College of Engineering, Komar University of Science and Technology, Sulaimani 46001, Kurdistan Regional Government, Iraq.
Materials (Basel). 2020 Aug 20;13(17):3675. doi: 10.3390/ma13173675.
Polymer electrolytes and composites have prevailed in the high performance and mobile marketplace during recent years. Polymer-based solid electrolytes possess the benefits of low flammability, excellent flexibility, good thermal stability, as well as higher safety. Several researchers have paid attention to the optical properties of polymer electrolytes and their composites. In the present review paper, first, the characteristics, fundamentals, advantages and principles of various types of polymer electrolytes were discussed. Afterward, the characteristics and performance of various polymer hosts on the basis of specific essential and newly published works were described. New developments in various approaches to investigate the optical properties of polymer electrolytes were emphasized. The last part of the review devoted to the optical band gap study using two methods: Tauc's model and optical dielectric loss parameter. Based on recently published literature sufficient quantum mechanical backgrounds were provided to support the applicability of the optical dielectric loss parameter for the band gap study. In this review paper, it was demonstrated that both Tauc's model and optical dielectric loss should be studied to specify the type of electron transition and estimate the optical band gap accurately. Other parameters such as absorption coefficient, refractive index and optical dielectric constant were also explored.
近年来,聚合物电解质及其复合材料在高性能和移动应用市场中占据了主导地位。聚合物基固体电解质具有低可燃性、出色的柔韧性、良好的热稳定性以及更高的安全性等优点。一些研究人员已经关注到聚合物电解质及其复合材料的光学性质。在本综述论文中,首先讨论了各类聚合物电解质的特性、基本原理、优点及原理。随后,基于特定的重要研究成果和新发表的作品,描述了各种聚合物主体的特性和性能。强调了研究聚合物电解质光学性质的各种方法的新进展。综述的最后一部分致力于使用两种方法进行光学带隙研究:陶克模型和光学介电损耗参数。基于最近发表的文献,提供了足够的量子力学背景来支持光学介电损耗参数在带隙研究中的适用性。在本综述论文中,证明了应同时研究陶克模型和光学介电损耗,以确定电子跃迁类型并准确估计光学带隙。还探讨了其他参数,如吸收系数、折射率和光学介电常数。