Wu Xinting, Ren Ning, Tong Gangsheng, Zhu Xinyuan
School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.
Shanghai Aerospace Equipment Manufacturer Co. Ltd., Shanghai Engineering Research Center of Specialized Polymer Materials for Aerospace, 100 Huaning Road, Shanghai 200245, China.
Langmuir. 2023 Nov 7;39(44):15740-15747. doi: 10.1021/acs.langmuir.3c02328. Epub 2023 Oct 30.
Ring-opening metathesis polymerization (ROMP) is a powerful method to graft various types of polymer chains to a given surface. While surface-initiated ROMP (SI-ROMP) serves as an efficient tool for surface modification and is therefore widely reported, the method requires grafting (1) the olefin substrate and (2) the metathesis catalyst to the surface prior to the polymerization with multiple synthetic and work up steps. To overcome this difficulty, we proposed the use of the chain-transfer reaction as an alternative method for surface modification. Terminal olefins are grafted to the surface without the need to graft the metathesis catalysts, and polymers with olefin backbones are polymerized and grafted simultaneously via both ROMP and chain transfer (cross-metathesis between olefins from backbones and surfaces). Compared to SI-ROMP, this surface-chain transfer ROMP (SC-ROMP) method avoids grafting the catalyst and growing polymer chains from the surface and could be achieved in a single step. Various types of surfaces like carbon nanotubes, carbon fibers, graphene nanosheets, and silica microspheres are used for demonstration. We envision that this work could bring a convenient and effective solution to surface modification via ROMP.
开环易位聚合(ROMP)是一种将各种类型的聚合物链接枝到给定表面的强大方法。虽然表面引发的ROMP(SI-ROMP)作为一种有效的表面改性工具并因此被广泛报道,但该方法需要在聚合之前通过多个合成和后处理步骤将(1)烯烃底物和(2)易位催化剂接枝到表面上。为克服这一困难,我们提出使用链转移反应作为表面改性的替代方法。末端烯烃被接枝到表面上,无需接枝易位催化剂,并且具有烯烃主链的聚合物通过ROMP和链转移(主链烯烃与表面烯烃之间的交叉易位)同时进行聚合和接枝。与SI-ROMP相比,这种表面链转移ROMP(SC-ROMP)方法避免了接枝催化剂和从表面生长聚合物链,并且可以一步实现。使用了各种类型的表面,如碳纳米管、碳纤维、石墨烯纳米片和二氧化硅微球进行演示。我们设想这项工作可以为通过ROMP进行表面改性带来一种方便有效的解决方案。