Prebihalo Emily A, Luke Anna M, Reddi Yernaidu, LaSalle Christopher J, Shah Vijay M, Cramer Christopher J, Reineke Theresa M
Department of Chemistry, University of Minnesota 207 Pleasant St. SE Minneapolis MN 55455 USA
Underwriters Laboratories Inc. 333 Pfingsten Rd., Northbrook Illinois 60620 USA.
Chem Sci. 2023 May 9;14(21):5689-5698. doi: 10.1039/d2sc06040j. eCollection 2023 May 31.
We present the synthesis, characterization and radical ring-opening polymerization (rROP) capabilities of thionoisochromanone (TIC), a fungi-derivable thionolactone. TIC is the first reported six-membered thionolactone to readily homopolymerize under free radical conditions without the presence of a dormant comonomer or repeated initiation. Even more, the resulting polymer is fully degradable under mild, basic conditions. Computations providing molecular-level insights into the mechanistic and energetic details of polymerization identified a unique ,,-orthoester intermediate that leads to a sustained chain-end. This sustained chain-end allowed for the synthesis of a block copolymer of TIC and styrene under entirely free radical conditions without explicit radical control methods such as reversible addition-fragmentation chain transfer polymerization (RAFT). We also report the statistical copolymerization of ring-retained TIC and styrene, confirmed by elemental analysis and energy-dispersive X-ray spectroscopy (EDX). Computations into the energetic details of copolymerization indicate kinetic drivers for ring-retaining behavior. This work provides the first example of a sustainable feedstock for rROP and provides the field with the first six-membered monomer susceptible to rROP, expanding the monomer scope to aid our fundamental understanding of thionolactone rROP behavior.
我们展示了硫代异苯并二氢吡喃酮(TIC)的合成、表征及其自由基开环聚合(rROP)能力,TIC是一种可从真菌中提取的硫代内酯。TIC是首个被报道的六元硫代内酯,能在自由基条件下容易地进行均聚,无需休眠共聚单体或重复引发。更重要的是,所得聚合物在温和的碱性条件下可完全降解。通过计算对聚合反应的机理和能量细节进行分子水平的深入研究,确定了一种独特的、、 - 原酸酯中间体,该中间体可导致持续的链端。这种持续的链端使得在完全自由基条件下合成TIC与苯乙烯的嵌段共聚物成为可能,而无需诸如可逆加成 - 断裂链转移聚合(RAFT)等明确的自由基控制方法。我们还报道了环保留的TIC与苯乙烯的统计共聚反应,通过元素分析和能量色散X射线光谱(EDX)得以证实。对共聚反应能量细节的计算表明了环保留行为的动力学驱动因素。这项工作提供了首个用于rROP的可持续原料实例,并为该领域提供了首个易受rROP影响的六元单体,扩大了单体范围,有助于我们从根本上理解硫代内酯rROP行为。