AI Article Synopsis

  • Terpene biosynthesis highlights the combination of modular design and chemical efficiency, showcasing its historical significance in chemistry.
  • Modern techniques involving nickel-catalyzed electrochemical reactions and silver nanoparticle-modified electrodes allow for the straightforward assembly of complex terpene structures.
  • The study emphasizes the improved efficiency in synthesizing 13 complex terpenes with fewer manipulations, while also exploring the mechanics of functionalized electrodes using various analytical methods.

Article Abstract

The synthesis of terpenes is a large field of research that is woven deeply into the history of chemistry. Terpene biosynthesis is a case study of how the logic of a modular design can lead to diverse structures with unparalleled efficiency. This work leverages modern nickel-catalyzed electrochemical sp-sp decarboxylative coupling reactions, enabled by silver nanoparticle-modified electrodes, to intuitively assemble terpene natural products and complex polyenes by using simple modular building blocks. The step change in efficiency of this approach is exemplified through the scalable preparation of 13 complex terpenes, which minimized protecting group manipulations, functional group interconversions, and redox fluctuations. The mechanistic aspects of the essential functionalized electrodes are studied in depth through a variety of spectroscopic and analytical techniques.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9248352PMC
http://dx.doi.org/10.1126/science.abn1395DOI Listing

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