Zhou Li, Reilly Liam T, Shi Changxia, Quinn Ethan C, Chen Eugene Y-X
Department of Chemistry, Colorado State University, Fort Collins, CO, USA.
Nat Chem. 2024 Aug;16(8):1357-1365. doi: 10.1038/s41557-024-01511-2. Epub 2024 Apr 22.
The selective synthesis of ultrahigh-molar-mass (UHMM, >2 million Da) cyclic polymers is challenging as an exceptional degree of spatiotemporal control is required to overcome the possible undesired reactions that can compete with the desired intramolecular cyclization. Here we present a counterintuitive synthetic methodology for cyclic polymers, represented here by polythioesters, which proceeds via superbase-mediated ring-opening polymerization of gem-dimethylated thiopropiolactone, followed by macromolecular cyclization triggered by protic quenching. This proton-triggered linear-to-cyclic topological transformation enables selective, linear polymer-like access to desired cyclic polythioesters, including those with UHMM surpassing 2 MDa. In addition, this method eliminates the need for stringent conditions such as high dilution to prevent or suppress linear polymer contaminants and presents the opposite scenario in which protic-free conditions are required to prevent cyclic polymer formation, which is capitalized to produce cyclic polymers on demand. Furthermore, such UHMM cyclic polythioester exhibits not only much enhanced thermostability and mechanical toughness, but it can also be quantitatively recycled back to monomer under mild conditions due to its gem-disubstitution.
超高分子量(UHMM,>200万道尔顿)环状聚合物的选择性合成具有挑战性,因为需要极高程度的时空控制,以克服可能与所需分子内环化竞争的不期望反应。在此,我们提出了一种用于环状聚合物的反直觉合成方法,以聚硫酯为例,该方法通过超强碱介导的偕二甲基化硫代丙内酯的开环聚合,然后通过质子猝灭引发大分子环化来进行。这种质子引发的线性到环状的拓扑转变能够选择性地、以类似线性聚合物的方式获得所需的环状聚硫酯,包括那些超高分子量超过200万道尔顿的聚硫酯。此外,该方法无需高稀释等严格条件来防止或抑制线性聚合物污染物,而是呈现出相反的情况,即需要无质子条件来防止环状聚合物形成,利用这一点可按需生产环状聚合物。此外,这种超高分子量环状聚硫酯不仅表现出大大增强的热稳定性和机械韧性,而且由于其偕二取代,在温和条件下还能定量循环回单体。