Youn Gyusaang, Sampson Nicole S
Department of Chemistry, Stony Brook University, New York 11790-3400, United States.
ACS Org Inorg Au. 2021 Oct 6;1(1):29-36. doi: 10.1021/acsorginorgau.1c00016. Epub 2021 Aug 13.
Herein, we report the origin of unexpected reactivity of bicyclo[4.2.0]oct-6-ene substrates containing an α,β-unsaturated amide moiety in ruthenium-catalyzed alternating ring-opening metathesis polymerization reactions. Specifically, compared with control substrates bearing an ester, alkyl ketone, nitrile, or tertiary amide substituent, α,β-unsaturated substrates with a weakly acidic proton showed increased rates of ring-opening metathesis mediated by Grubbs-type ruthenium catalysts. H NMR and IR spectral analyses indicated that deprotonation of the α,β-unsaturated amide substrates resulted in stronger coordination of the carbonyl group to the ruthenium metal center. Principal component analysis identified ring strain and the electron density on the carbonyl oxygen (based on structures optimized by means of ωB97X-D/6311+G(2df,2p) calculations) as the two key contributors to fast ring-opening metathesis of the bicyclo[4.2.0]oct-6-enes; whereas the dipole moment, conjugation, and energy of the highest occupied molecular orbital had little to no effect on the reaction rate. We conclude that alternating ring-opening metathesis polymerization reactions of bicyclo[4.2.0]oct-6-enes with unstrained cycloalkenes require an ionizable proton for efficient generation of alternating polymers.
在此,我们报道了在钌催化的交替开环易位聚合反应中,含有α,β-不饱和酰胺部分的双环[4.2.0]辛-6-烯底物出现意外反应活性的原因。具体而言,与带有酯、烷基酮、腈或叔酰胺取代基的对照底物相比,带有弱酸性质子的α,β-不饱和底物在Grubbs型钌催化剂介导下的开环易位速率有所提高。1H NMR和IR光谱分析表明,α,β-不饱和酰胺底物的去质子化导致羰基与钌金属中心的配位更强。主成分分析确定环张力和羰基氧上的电子密度(基于通过ωB97X-D/6311+G(2df,2p)计算优化的结构)是双环[4.2.0]辛-6-烯快速开环易位的两个关键因素;而偶极矩、共轭和最高占据分子轨道的能量对反应速率几乎没有影响。我们得出结论,双环[4.2.0]辛-6-烯与无张力环烯烃的交替开环易位聚合反应需要一个可电离的质子来有效生成交替聚合物。