Jia Jinhong, Chai Yao, Xun Xingwei, Gao Yan, Qiao Tongsen, Wang Xiong, Wang Xi-Cun, Hasell Tom, Wu Xiaofeng, Quan Zheng-Jun
College of Chemistry and Chemical Engineering, Gansu International Scientific and Technological Cooperation Base of Water-Retention Chemical Functional Material, Northwest Normal University, Lanzhou, Gansu, 730070, P. R. China.
Lanzhou Petrochemical Branch of China National Petroleum Corporation, Lanzhou, Gansu, 730060, P. R. China.
Macromol Rapid Commun. 2025 Apr;46(6):e2400998. doi: 10.1002/marc.202400998. Epub 2025 Jan 15.
Recent advancements in inverse vulcanization have led to the development of sulfur-rich polymers with diverse applications. However, progress is constrained by the harsh high-temperature reaction conditions, limited applicability, and the generation of hazardous HS gas. This study presents an induced IV method utilizing selenium octanoic acid, yielding sulfur-selenium rich polymers with full atom economy, even at a low-temperatures of 100-120 °C. The resultant sulfur-selenium rich polymers exhibit exceptional optical properties: 1) A high refractive index, reaching 1.89 when the total sulfur-selenium content is 65%; 2) Excellent UV shielding capabilities, blocking ultraviolet rays while permitting 95.1-98.6% transmission of visible light; 3) Notable transparency, with polymer films of 0.94 mm thickness exhibiting good transparency under natural light. The materials also demonstrate environmental stability under prolonged exposure to hot or cold conditions. Additionally, the polymers display adhesive strength as evidenced by two adhered glass slides with the material lifting weights of up to 20 kg without any displacement in their glued area. These properties provide a new avenue for sulfur-selenium rich materials to be implemented in high-precision optical instruments with unique characteristics.
反向硫化技术的最新进展促使了具有多种应用的富硫聚合物的发展。然而,该技术的发展受到苛刻的高温反应条件、有限的适用性以及有害HS气体生成的限制。本研究提出了一种利用辛酸硒的诱导反向硫化方法,即使在100 - 120°C的低温下也能生成具有全原子经济性的富硫硒聚合物。所得的富硫硒聚合物具有优异的光学性能:1)高折射率,当硫硒总含量为65%时,折射率达到1.89;2)出色的紫外线屏蔽能力,能阻挡紫外线,同时允许95.1 - 98.6%的可见光透过;3)显著的透明度,0.94毫米厚的聚合物薄膜在自然光下具有良好的透明度。这些材料在长时间暴露于热或冷条件下时也表现出环境稳定性。此外,聚合物还显示出粘附强度,两块粘贴有该材料的载玻片能够承受高达20千克的重量,粘贴区域无任何位移。这些特性为富硫硒材料在具有独特特性的高精度光学仪器中的应用提供了一条新途径。