Nechmad Noy B, Kobernik Victoria, Tarannam Naziha, Phatake Ravindra, Eivgi Or, Kozuch Sebastian, Lemcoff N Gabriel
Department of Chemistry, Ben-Gurion University of the Negev, Beer-Sheva, 84105, Israel.
Ilse Katz Institute for Nanotechnology Science, Ben-Gurion University of the Negev, Beer-Sheva, 84105, Israel.
Angew Chem Int Ed Engl. 2021 Mar 15;60(12):6372-6376. doi: 10.1002/anie.202014929. Epub 2021 Feb 12.
A trifluoromethyl sulfur-chelated ruthenium benzylidene, Ru-S-CF -I, was synthesized and characterized. This latent precatalyst provides a distinct activity and selectivity profiles for olefin metathesis reactions depending on the substrate. For example, 1,3-divinyl-hexahydropentalene derivatives were efficiently obtained by ring-opening metathesis (ROM) of dicyclopentadiene (DCPD). Ru-S-CF -I also presented a much more effective photoisomerization process from the inactive cis-diiodo to the active trans-diiodo configuration after exposure to 510 nm (green light), allowing for a wide scope of photoinduced olefin metathesis reactions. DFT calculations suggest a faster formation and enhanced stability of the active trans-diiodo species of Ru-S-CF -I compared with Ru-S-Ph-I, explaining its higher reactivity. In addition, the photochemical release of chloride anions by irradiation of Cl-BODIPY in the presence of DCPD derivatives with diiodo Ru benzylidenes, led to in situ generation of chloride complexes, which quickly produced the corresponding cross-linked polymers. Thus, novel selective pathways that use visible light to guide olefin metathesis based synthetic sequences is presented.
合成并表征了一种三氟甲基硫螯合的钌亚苄基化合物Ru-S-CF₃-I。这种潜在的前催化剂根据底物的不同,为烯烃复分解反应提供了独特的活性和选择性特征。例如,通过二环戊二烯(DCPD)的开环复分解(ROM)反应有效地得到了1,3-二乙烯基-六氢并五苯衍生物。Ru-S-CF₃-I在暴露于510 nm(绿光)后,还呈现出从无活性的顺式二碘化物到活性反式二碘化物构型的更有效的光异构化过程,从而实现了广泛的光诱导烯烃复分解反应。密度泛函理论(DFT)计算表明,与Ru-S-Ph-I相比,Ru-S-CF₃-I的活性反式二碘化物物种形成更快且稳定性增强,这解释了其更高的反应活性。此外,在DCPD衍生物与二碘钌亚苄基化合物存在的情况下,通过照射Cl-BODIPY实现氯离子的光化学释放,导致原位生成氯配合物,这些配合物迅速生成相应的交联聚合物。因此,提出了利用可见光引导基于烯烃复分解的合成序列的新型选择性途径。