Park Sangwoo, Chung Minju, Lamprou Alexandros, Seidel Karsten, Song Sanghoon, Schade Christian, Lim Jeewoo, Char Kookheon
School of Chemical and Biological Engineering, Seoul National University Seoul 08826 Republic of Korea
Functional Polymers Global Research, Innovation Campus Asia Pacific, BASF 200137 Shanghai China.
Chem Sci. 2021 Dec 15;13(2):566-572. doi: 10.1039/d1sc05896g. eCollection 2022 Jan 5.
Inverse vulcanization provides a simple, solvent-free method for the preparation of high sulfur content polymers using elemental sulfur, a byproduct of refining processes, as feedstock. Despite the successful demonstration of sulfur polymers from inverse vulcanization in optical, electrochemical, and self-healing applications, the mechanical properties of these materials have remained limited. We herein report a one-step inverse vulcanization using allyl glycidyl ether, a heterobifunctional comonomer. The copolymerization, which proceeds reactive compatibilization, gives an epoxy cross-linked sulfur polymer in a single step, as demonstrated through isothermal kinetic experiments and solid-state C NMR spectroscopy. The resulting high sulfur content (≥50 wt%) polymers exhibited tensile strength at break in the range of 10-60 MPa (70-50 wt% sulfur), which represents an unprecedentedly high strength for high sulfur content polymers from vulcanization. The resulting high sulfur content copolymer also exhibited extraordinary shape memory behavior along with shape reprogrammability attributed to facile polysulfide bond rearrangement.
反向硫化提供了一种简单的、无溶剂的方法,用于制备高硫含量聚合物,该方法使用精炼过程的副产品元素硫作为原料。尽管反向硫化制备的硫聚合物已成功应用于光学、电化学和自愈等领域,但其机械性能仍然有限。我们在此报告了一种使用烯丙基缩水甘油醚(一种异双功能共聚单体)的一步法反向硫化。通过等温动力学实验和固态碳核磁共振光谱表明,该共聚反应通过反应性增容进行,一步生成环氧交联硫聚合物。所得高硫含量(≥50 wt%)聚合物的断裂拉伸强度在10-60 MPa范围内(硫含量为70-50 wt%),这对于硫化制备的高硫含量聚合物来说是前所未有的高强度。所得高硫含量共聚物还表现出非凡的形状记忆行为以及归因于易进行的多硫键重排的形状可重新编程性。