Marshall Christopher M, Molineux Jake, Kang Kyung-Seok, Kumirov Vlad, Kim Kyung-Jo, Norwood Robert A, Njardarson Jon T, Pyun Jeffrey
Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona 85721, United States.
C. Wyant College of Optical Sciences, University of Arizona, Tucson, Arizona 85721, United States.
J Am Chem Soc. 2024 Aug 28;146(34):24061-24074. doi: 10.1021/jacs.4c08113. Epub 2024 Aug 14.
The preparation of high-sulfur content organosulfur polymers has generated considerable interest as an emerging area in polymer science that has been driven by advances in the inverse vulcanization polymerization of elemental sulfur with organic comonomers. While numerous new inverse vulcanized polysulfides have been made over the past decade, insights into the mechanism of inverse vulcanization and structural characterization of the high-sulfur-content copolymers remain limited in scope. Furthermore, the exploration of new molecular architectures for organic comonomer synthesis remains an important frontier to enhance the properties of these new polymeric materials. In the current report, the first detailed study on the synthesis and inverse vulcanization of polycyclic rigid comonomers derived from norbornadiene was conducted, affording a quantitative assessment of polymer microstructure for these organopolysulfides and insights into the inverse vulcanization polymerization mechanism for this class of monomers. In particular, a stereoselective synthesis of the endo-exo norbornadiene cyclopentadiene adduct (Stillene) was achieved, which enabled direct comparison with the known exo-exo norbornadiene dimer (NBD2) previously used for inverse vulcanization. Reductive degradation of these sulfur copolymers and detailed structural analysis of the recovered sulfurated organic fragments revealed that remarkable exo-stereospecificity was achieved in the inverse vulcanization of elemental sulfur with both these polycyclic dienyl comonomers, which correlated to the robust thermomechanical properties associated with organopolysulfides made from NBD2 previously. Melt processing and molding of these sulfur copolymers were conducted to fabricate free-standing plastic lenses for long-wave infrared thermal imaging.
高硫含量有机硫聚合物的制备作为聚合物科学中的一个新兴领域引起了广泛关注,这一领域是由元素硫与有机共聚单体的反向硫化聚合进展所推动的。尽管在过去十年中已经制备了许多新型的反向硫化多硫化物,但对反向硫化机理以及高硫含量共聚物的结构表征的认识在范围上仍然有限。此外,探索用于有机共聚单体合成的新分子结构仍然是提高这些新型聚合物材料性能的一个重要前沿领域。在本报告中,首次对源自降冰片二烯的多环刚性共聚单体的合成及反向硫化进行了详细研究,对这些有机聚硫化物的聚合物微观结构进行了定量评估,并深入了解了这类单体的反向硫化聚合机理。特别是,实现了内-外型降冰片二烯环戊二烯加合物(斯蒂勒烯)的立体选择性合成,从而能够与先前用于反向硫化的已知外型-外型降冰片二烯二聚体(NBD2)进行直接比较。这些硫共聚物的还原降解以及对回收的硫化有机片段的详细结构分析表明,在元素硫与这两种多环二烯基共聚单体的反向硫化过程中都实现了显著的外型立体特异性,这与先前由NBD2制成的有机聚硫化物所具有的强大热机械性能相关。对这些硫共聚物进行了熔融加工和成型,以制造用于长波红外热成像的独立塑料透镜。