Yan Peiyao, Zhao Wei, Zhang Bowen, Jiang Liang, Petcher Samuel, Smith Jessica A, Parker Douglas J, Cooper Andrew I, Lei Jingxin, Hasell Tom
Department of Chemistry, University of Liverpool, Crown Street, Liverpool, L69 7ZD, UK.
Leverhulme Research Centre for Functional Materials Design and Materials Innovation Factory, University of Liverpool, Oxford Street, Liverpool, L7 3NY, UK.
Angew Chem Int Ed Engl. 2020 Aug 3;59(32):13371-13378. doi: 10.1002/anie.202004311. Epub 2020 Jun 4.
The invention of inverse vulcanization provides great opportunities for generating functional polymers directly from elemental sulfur, an industrial by-product. However, unsatisfactory mechanical properties have limited the scope for wider applications of these exciting materials. Here, we report an effective synthesis method that significantly improves mechanical properties of sulfur-polymers and allows control of performance. A linear pre-polymer containing hydroxyl functional group was produced, which could be stored at room temperature for long periods of time. This pre-polymer was then further crosslinked by difunctional isocyanate secondary crosslinker. By adjusting the molar ratio of crosslinking functional groups, the tensile strength was controlled, ranging from 0.14±0.01 MPa to 20.17±2.18 MPa, and strain was varied from 11.85±0.88 % to 51.20±5.75 %. Control of hardness, flexibility, solubility and function of the material were also demonstrated. We were able to produce materials with suitable combination of flexibility and strength, with excellent shape memory function. Combined with the unique dynamic property of S-S bonds, these polymer networks have an attractive, vitrimer-like ability for being reshaped and recycled, despite their crosslinked structures. This new synthesis method could open the door for wider applications of sustainable sulfur-polymers.
反向硫化的发明为直接从工业副产品元素硫制备功能聚合物提供了巨大机遇。然而,不尽人意的机械性能限制了这些令人兴奋的材料的更广泛应用范围。在此,我们报道了一种有效的合成方法,该方法能显著改善硫聚合物的机械性能并实现性能调控。制备了一种含羟基官能团的线性预聚物,其可在室温下长期储存。然后,该预聚物通过双官能异氰酸酯二次交联剂进一步交联。通过调节交联官能团的摩尔比,可控制拉伸强度,范围为0.14±0.01 MPa至20.17±2.18 MPa,应变从11.85±0.88 %变化至51.20±5.75 %。还展示了对材料硬度、柔韧性、溶解性和功能的调控。我们能够制备出柔韧性和强度组合适宜且具有优异形状记忆功能的材料。结合S-S键独特的动态特性,这些聚合物网络尽管具有交联结构,但具有类似热致液晶聚合物的引人注目的重塑和回收能力。这种新的合成方法可为可持续硫聚合物的更广泛应用打开大门。