TY - JOUR
T1 - Reactivity and Selectivity in Ruthenium Sulfur-Chelated Diiodo Catalysts
AU - Nechmad, Noy B.
AU - Kobernik, Victoria
AU - Tarannam, Naziha
AU - Phatake, Ravindra
AU - Eivgi, Or
AU - Kozuch, Sebastian
AU - Lemcoff, N. Gabriel
N1 - Publisher Copyright:
© 2021 Wiley-VCH GmbH
PY - 2021/3/15
Y1 - 2021/3/15
N2 - A trifluoromethyl sulfur-chelated ruthenium benzylidene, Ru-S-CF3-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-CF3-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-CF3-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.
AB - A trifluoromethyl sulfur-chelated ruthenium benzylidene, Ru-S-CF3-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-CF3-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-CF3-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.
KW - green light
KW - iodide ligands
KW - olefin metathesis
KW - photopolymerization
KW - sulfur-chelated ruthenium
UR - https://www.scopus.com/pages/publications/85100835370
U2 - 10.1002/anie.202014929
DO - 10.1002/anie.202014929
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C2 - 33576565
AN - SCOPUS:85100835370
SN - 1433-7851
VL - 60
SP - 6372
EP - 6376
JO - Angewandte Chemie - International Edition
JF - Angewandte Chemie - International Edition
IS - 12
ER -