Irshad Farida, Khan Nayab, Howari Haidar, Fatima Mahvish, Farooq Assad, Awais Muhammad, Ayyoob Muhammad, Tusief Muhammad Qamar, Virk Razia, Hussain Fiaz
Department of Fiber and Textile Technology, University of Agriculture Faisalabad, Faisalabad 36000, Pakistan.
Department of Physics, College of Science, Qassim University, Buraydah 51452, Qassim, Saudi Arabia.
Materials (Basel). 2024 Sep 17;17(18):4568. doi: 10.3390/ma17184568.
Polyester-based advanced thin films have versatile industrial applications, especially in the fields of textiles, packaging, and electronics. Recent advances in polymer science and engineering have resulted in the development of advanced amorphous and semi-crystalline polyesters with exceptional performance compared to those of conventional polymeric films. Among these, 1,4-cyclohexanedimethanol (CHDM) and cyclic-monomer-based polyesters have gained considerable attention for their exceptional characteristics and potential applications in smart films. This review article provides a comprehensive overview of the recent advances in the synthesis, characterization, and applications of CHDM and cyclic-monomer-based advanced polymers for smart film applications. It discusses the structure-property relationships of these innovative polyesters and highlights their unique characteristics, including thermal, mechanical, and barrier characteristics. Furthermore, this article also emphasizes the solution, melt, and solid-state polymerizations of the polymers. Special emphasis is placed on the influence of the addition of a second diol or second diacid on the performance characteristics of synthesized polyesters/copolyesters to explore their versatile industrial applications. Additionally, the impact of the stereochemistry of the monomers is explored to optimize the characterization of polyesters suitable for industrial applications. Furthermore, this article explores the potential of these advanced polyesters to be considered as materials for smart film applications, especially in the field of flexible electronics. Finally, this article examines the challenges and future recommendations for the development of CHDM and cyclic-monomer-based polyesters for smart film applications. It discusses potential avenues for further research, including in-depth studies for the synthesis and characterization of polyesters, the development of sustainable and biodegradable alternatives to cyclic monomers, alternative green approaches for the synthesis of polymers, etc. This review article provides valuable insight for researchers in academia and industry who are working in the fields of polymer science and materials engineering.
基于聚酯的先进薄膜具有广泛的工业应用,特别是在纺织、包装和电子领域。聚合物科学与工程的最新进展带来了先进的非晶态和半结晶聚酯的发展,与传统聚合物薄膜相比,它们具有卓越的性能。其中,1,4 - 环己烷二甲醇(CHDM)和基于环状单体的聚酯因其卓越的特性以及在智能薄膜中的潜在应用而备受关注。这篇综述文章全面概述了用于智能薄膜应用的CHDM和基于环状单体的先进聚合物在合成、表征及应用方面的最新进展。它讨论了这些创新聚酯的结构 - 性能关系,并突出了它们的独特特性,包括热性能、机械性能和阻隔性能。此外,本文还强调了聚合物的溶液聚合、熔融聚合和固态聚合。特别强调了添加第二种二醇或第二种二酸对合成聚酯/共聚酯性能特征的影响,以探索它们的广泛工业应用。此外,还探讨了单体立体化学的影响,以优化适用于工业应用的聚酯的表征。此外,本文还探讨了这些先进聚酯作为智能薄膜应用材料的潜力,特别是在柔性电子领域。最后,本文研究了用于智能薄膜应用的CHDM和基于环状单体的聚酯开发所面临的挑战及未来建议。它讨论了进一步研究的潜在途径,包括对聚酯合成和表征的深入研究、环状单体的可持续和可生物降解替代品的开发、聚合物合成的替代绿色方法等。这篇综述文章为从事聚合物科学和材料工程领域的学术界和工业界研究人员提供了有价值的见解。