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Equilibrium-driven decarbonylative multi-deuteration enables access to highly deuterated carbon frameworks
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- Title
- Equilibrium-driven decarbonylative multi-deuteration enables access to highly deuterated carbon frameworks
- Issued Date
- 2026-09
- Citation
- CHEMICAL SCIENCE, v.17, no.35, pp.16904 - 16911
- Type
- Article
- Keywords
- HYDROGEN-ISOTOPE-EXCHANGE ; DEUTERIUM ; DRUG
- ISSN
- 2041-6520
- Abstract
-
Deuterium incorporation is a powerful strategy for modulating metabolic stability and probing reaction mechanisms. However, existing approaches based on defunctionalization or hydrogen-deuterium exchange are typically limited to mono-deuteration or suffer from poor site selectivity, restricting access to multi-deuterated carbon centers. Herein, we report a cost-effective strategy for decarbonylative multi-deuteration of aldehydes by integrating polar alpha-deuteration, thiyl radical-mediated hydrogen atom transfer (HAT), and decarbonylative deuteration. A key feature of this approach is an equilibrium-controlled radical-polar process, in which multiple reversible steps are directed toward productive pathways through irreversible trapping of alkyl radicals. The method employs inexpensive, commercially available reagents and exhibits a broad substrate scope encompassing primary, secondary, and tertiary aldehydes, including structurally complex substrates. This strategy provides a practical platform for the synthesis of highly deuterated carbon frameworks, offering new opportunities for isotopic labeling and medicinal chemistry.
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- Publisher
- ROYAL SOC CHEMISTRY
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