Ambulo Cedric P, Carothers Kyle J, Hollis Ashford T, Limburg Hannah N, Sun Lirong, Thrasher Carl J, McConney Michael E, Godman Nicholas P
Azimuth Corporation, 2970 Presidential Dr., Fairborn, OH, 45324, USA.
Materials and Manufacturing Directorate, Air Force Research Laboratory, 2977 Hobson Way, Wright Patterson AFB, Fairborn, OH, 45433, USA.
Macromol Rapid Commun. 2023 Mar;44(5):e2200798. doi: 10.1002/marc.202200798. Epub 2023 Jan 27.
Inverse vulcanization techniques are used to fabricate thermodynamically stable, sulfur polymers. Sulfur-based polymers exhibit higher refractive indices and improved transparency in the mid-wave infrared region compared with most organic polymers. Herein, the postsynthetic modification of sulfur polymers created via inverse vulcanization to generate novel, inorganic/organic photoresists is discussed. Amine-containing sulfur resins are postfunctionalized with cross-linkable alkynes. The sulfur-based materials undergo rapid photo-crosslinking to generate patternable films within 10 min under UV irradiation (365 nm). The development of these resins enables sulfur polymers to be utilized in processes where spatial and hierarchical control is necessary. The generation of this class of materials also expands on sulfur-based organic polymer systems with optical applications.
反向硫化技术用于制造热力学稳定的硫聚合物。与大多数有机聚合物相比,硫基聚合物在中波红外区域表现出更高的折射率和更好的透明度。本文讨论了通过反向硫化制备的硫聚合物的合成后修饰,以生成新型无机/有机光刻胶。含胺硫树脂用可交联炔烃进行后功能化。硫基材料在紫外线照射(365nm)下10分钟内快速光交联,生成可图案化的薄膜。这些树脂的开发使硫聚合物能够用于需要空间和层次控制的工艺中。这类材料的产生也扩展了具有光学应用的硫基有机聚合物体系。