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Applications of Quantum Chemistry in Biomimetic Syntheses of Polycyclic Furanocembrane Derivatives

Wang, Di; Zhou, Tao; Ren, Jianfeng; Hirst, Jonathan; Gao, Zhanghua; Tang, Bencan

Applications of Quantum Chemistry in Biomimetic Syntheses of Polycyclic Furanocembrane Derivatives Thumbnail


Authors

Di Wang

Tao Zhou

Jianfeng Ren

Zhanghua Gao

Bencan Tang



Abstract

This paper summarizes the guidance provided by quantum chemical calculations to the biomimetic syntheses of polycyclic marine furanocembrane derivatives. Polycyclic furanocembrane derivatives are a group of structurally complex and biologically important marine natural products isolated from marine corals. Their syntheses are challenging due to their structural complexity. Biomimetic synthetic proposals have been made and some verified via chemical synthesis. Computational chemistry can support these biomimetic syntheses. Hence, here we describe the synthetic and computational attempts we have made in the biomimetic syntheses of polycyclic furanocembrane derivatives, including intricarene, bielschowskysin, providencin and plumarellide.

Citation

Wang, D., Zhou, T., Ren, J., Hirst, J., Gao, Z., & Tang, B. (2024). Applications of Quantum Chemistry in Biomimetic Syntheses of Polycyclic Furanocembrane Derivatives. SYNLETT, https://doi.org/10.1055/a-2239-6577

Journal Article Type Article
Acceptance Date Jan 5, 2024
Online Publication Date Jan 5, 2024
Publication Date Jan 5, 2024
Deposit Date Jan 28, 2024
Publicly Available Date Jan 6, 2025
Journal Synlett
Print ISSN 0936-5214
Electronic ISSN 1437-2096
Publisher Thieme Publishing
Peer Reviewed Peer Reviewed
DOI https://doi.org/10.1055/a-2239-6577
Keywords biomimetic synthesis - computational chemistry - photochemistry - furanocembranes - pericyclic reaction
Public URL https://nottingham-repository.worktribe.com/output/29825583
Publisher URL https://www.thieme-connect.de/products/ejournals/abstract/10.1055/a-2239-6577

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