Publication | Closed Access
Total Synthesis of (−)-Chromodorolide B By a Computationally-Guided Radical Addition/Cyclization/Fragmentation Cascade
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Citations
109
References
2018
Year
Combinatorial ChemistryEngineeringChromodorolide Marine DiterpenoidFirst Total SynthesisSynthetic PhotochemistryOrganic Chemistry-Chromodorolide BChemistryDiversity Oriented SynthesisPhotoredox ProcessStereoselective SynthesisBiochemistryPhotochemistryComputational StudiesTotal SynthesisCatalysisBiomolecular EngineeringHeterocyclicNatural SciencesSynthetic Chemistry
The first total synthesis of a chromodorolide marine diterpenoid is described. The core of the diterpenoid is constructed by a bimolecular radical addition/cyclization/fragmentation cascade that unites two complex fragments and forms two C-C bonds and four contiguous stereogenic centers of (-)-chromodorolide B in a single step. This coupling step is initiated by visible-light photocatalytic fragmentation of a redox-active ester, which can be accomplished in the presence of an iridium or a less-precious electron-rich dicyanobenzene photocatalyst, and employs equimolar amounts of the two addends. Computational studies guided the development of this central step of the synthesis and provide insight into the origin of the observed stereoselectivity.
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