Starvaggi Francesca A, Suslick Benjamin A, Xia Yan
Department of Chemistry, Stanford University, Stanford, California 94305, United States.
Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.
ACS Macro Lett. 2024 Mar 19;13(3):296-301. doi: 10.1021/acsmacrolett.3c00770. Epub 2024 Feb 15.
Vinyl ethers are commonly used to deactivate Grubbs catalysts and terminate ring opening metathesis polymerization (ROMP) by forming Fischer carbene species with attenuated metathesis reactivity. However, we recently demonstrated that a cyclic enol ether, 2,3-dihydrofuran (DHF), can in fact be homopolymerized or copolymerized with norbornene derivatives. 1,5-Cyclooctadiene (COD) and cyclooctene (COE) consist of an important class of ROMP monomers, and we describe here a study of their copolymerization with DHF. Addition of DHF greatly suppressed the ROMP activity of COD and COE and resulted in significant alkene isomerization of COD. Chloranil was found to be an effective additive to prevent undesired isomerization and promote copolymerization. As a result, high molecular weight COD/COE and DHF copolymers were synthesized. Hydrolysis of the enol ether main chain linkages yields polyalkenamers with alcohol and aldehyde end groups. This study encourages further exploration of the formed Ru Fischer carbene species in ROMP to access degradable polymers.
乙烯基醚通常用于使格拉布催化剂失活,并通过形成具有减弱的复分解反应活性的费歇尔卡宾物种来终止开环易位聚合(ROMP)。然而,我们最近证明,环状烯醇醚2,3-二氢呋喃(DHF)实际上可以与降冰片烯衍生物进行均聚或共聚。1,5-环辛二烯(COD)和环辛烯(COE)是一类重要的ROMP单体,我们在此描述了它们与DHF共聚的研究。加入DHF极大地抑制了COD和COE的ROMP活性,并导致COD发生显著的烯烃异构化。发现四氯苯醌是一种有效的添加剂,可防止不希望的异构化并促进共聚。结果,合成了高分子量的COD/COE和DHF共聚物。烯醇醚主链键的水解产生具有醇和醛端基的聚链烯。这项研究鼓励进一步探索ROMP中形成的钌费歇尔卡宾物种,以获得可降解聚合物。