Authors Ha, S; Lee, Y; Kwak, Y; Mishra, A; Yu, E; Ryou, B; Park, CM in NATURE PUBLISHING GROUP published article about BASIS-SET; PHOTOCYCLOADDITION; CATALYSIS; ENYNES; PALLADIUM; EFFICIENT; ELECTRON; CYCLOISOMERIZATION; FUNCTIONALIZATION; SENSITIZATION in [Ha, Sujin; Lee, Yeji; Kwak, Yoonna; Mishra, Akash; Yu, Eunsoo; Ryou, Bokyeong; Park, Cheol-Min] UNIST Ulsan Natl Inst Sci & Technol, Dept Chem, Ulsan 44919, South Korea in 2020.0, Cited 69.0. Recommanded Product: 78-39-7. The Name is 1,1,1-Triethoxyethane. Through research, I have a further understanding and discovery of 78-39-7
UV-activated alkyne-alkene [2+2] cycloaddition has served as an important tool to access cyclobutenes. Although broadly adopted, the limitations with UV light as an energy source prompted us to explore an alternative method. Here we report alkyne-alkene [2+2] cycloaddition based on visible light photocatalysis allowing the synthesis of diverse cyclobutenes and 1,3-dienes via inter- and intramolecular reactions. Extensive mechanistic studies suggest that the localized spin densities at sp(2) carbons of alkenes account for the productive sensitization of alkenes despite their similar triplet levels of alkenes and alkynes. Moreover, the efficient formation of 1,3-dienes via tandem triplet activation of the resulting cyclobutenes is observed when intramolecular enyne cycloaddition is performed, which may serve as a complementary means to the Ru(II)-catalyzed enyne metathesis. In addition, the utility of the [2+2] cycloaddition has been demonstrated by several synthetic transformations including synthesis of various extended pi-systems.
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