State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, Jilin, 130012, China.
Macromol Rapid Commun. 2023 Dec;44(23):e2300411. doi: 10.1002/marc.202300411. Epub 2023 Sep 4.
High refractive index polymers (HRIPs) are widely used in lenses, waveguide, antireflective layer and encapsulators, especially the advanced fields of augmented/virtual reality (AR / VR) holographic technology and photoresist for chip manufacturing. In order to meet the needs of different applications, the development of HRIPs focuses not only on the increase in refractive index but also on the balance of other properties. Sulfur-containing high refractive index polymers have received extensive attention from researchers due to their excellent properties. In recent years, not only ultrahigh refractive index sulfur-containing polymers have been continuously developed, but also low dispersion, low birefringence, high transparency, good mechanical properties, and machinability have been studied. The design of HRIPs is generally based on formulas and existing experience. In fact, molecular structure and properties are closely related. Mastering the structure-property relationship helps researchers to develop high refractive index polymer materials with balanced properties. This review briefly introduces the preparation methods of sulfur-containing high refractive index polymers, and summarizes the structure-property relationship between the sulfur-containing molecular structure and optical properties, mechanical properties, thermal properties, etc. Finally, the important role of synergistic effect in the synthesis of HRIPs and the prospect of future research on HRIPs are proposed.
高折射率聚合物(HRIPs)广泛应用于透镜、波导、抗反射层和封装材料,特别是在增强/虚拟现实(AR/VR)全息技术和芯片制造用光刻胶等先进领域。为了满足不同应用的需求,HRIPs 的发展不仅注重折射率的提高,还注重其他性能的平衡。由于具有优异的性能,含硫高折射率聚合物受到了研究人员的广泛关注。近年来,不仅不断开发出超高折射率含硫聚合物,而且还研究了低色散、低双折射、高透明度、良好的机械性能和可加工性。HRIPs 的设计通常基于公式和现有经验。事实上,分子结构与性能密切相关。掌握结构-性能关系有助于研究人员开发具有平衡性能的高折射率聚合物材料。本文简要介绍了含硫高折射率聚合物的制备方法,并总结了含硫分子结构与光学性能、机械性能、热性能等之间的结构-性能关系。最后,提出了协同效应对 HRIPs 合成的重要作用以及对 HRIPs 未来研究的展望。