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  • 89. Digital Duet: Synergism between computation and the synthesis of glycosides

    89. Digital Duet: Synergism between computation and the synthesis of glycosides

    89. Fernandez, S. A.; Snelson, D. W.; Shenvi, R. A. “Digital Duet: Synergism between computation and the synthesis of glycosides” TCI Mail, 2025, accepted.

  • 86. Contrasteric glycosylations of cotylenol and 1,2-diols by virtual linker selection

    86. Contrasteric glycosylations of cotylenol and 1,2-diols by virtual linker selection

    86. Snelson, D.;† Ting, S.;† Shenvi, R. A. “Contrasteric glycosylations of cotylenol and 1,2-diols by virtual linker selection” J. Am. Chem. Soc. 2025, 147, 1327–1333.

  • 85. Total synthesis of twenty-five picrotoxanes by virtual library selection

    85. Total synthesis of twenty-five picrotoxanes by virtual library selection

    85. Li, C.; Shenvi, R. A. “Total synthesis of twenty-five picrotoxanes by virtual library selection” Nature, 2024, accepted. ChemRxiv DOI: 10.26434/chemrxiv-2024-g8j1r

  • 79. Natural product synthesis in the 21st century: beyond the mountain top

    79. Natural product synthesis in the 21st century: beyond the mountain top

    79. Shenvi, R. A. “Natural product synthesis in the 21st century: beyond the mountain top” [invited Perspective] ACS Cent. Sci. 2024, 10, 519–528.

  • 78. Methylation Confers Accessibility, Stability and Selectivity to Picrotoxinin

    78. Methylation Confers Accessibility, Stability and Selectivity to Picrotoxinin

    78. Tong, G.; Griffin, S.; Sader, A.; Crowell, A. B.; Beavers, K.; Watson, J.; Buchan, Z.; Chen, S.; Shenvi, R. A. C5 Methylation Confers Accessibility, Stability and Selectivity to Picrotoxinin Nature Commun. 2023, 14, 8308. ChemRxiv DOI: 10.26434/chemrxiv-2022-0l4nt

  • 72. A route to potent, selective and biased salvinorin chemical space

    72. A route to potent, selective and biased salvinorin chemical space

    72. Hill, S. J.§; Dao, N.§; Dang, V.; Stahl, E.; Bohn, L. Shenvi, R. A. A route to potent, selective and biased salvinorin chemical space. ACS Cent. Sci., 2023, online. §co-first authors

  • 65.  Stereodivergent attached ring synthesis via non-covalent interactions: a short formal synthesis of merrilactone

    65.  Stereodivergent attached ring synthesis via non-covalent interactions: a short formal synthesis of merrilactone

    65. Huffman, B. J.; Chu, T.; Hanaki, Y.; Wong, J. J.; Chen, S.; Houk, K. N.; Shenvi, R. A. Stereodivergent attached ring synthesis via non-covalent interactions: a short formal synthesis of merrilactone A Angew. Chem. Int. Ed. 2022, 61, e202114514.

  • 62. Natural Product Synthesis through the Lens of Informatics

    62. Natural Product Synthesis through the Lens of Informatics

    62. Woo, S.; Shenvi, R. A. Natural Product Synthesis through the Lens of Informatics Acc. Chem. Res. 2021, 54, 1157–1167.

  • 59. Synthetic, Mechanistic and Biological Interrogation of Ginkgo biloba Chemical Space en route to (–)-Bilobalide

    59. Synthetic, Mechanistic and Biological Interrogation of Ginkgo biloba Chemical Space en route to (–)-Bilobalide

    59. Demoret, R. M.; Baker, M. A.; Ohtawa, M.; Chen, S.; Lam, C.-C.; Khom, S.; Roberto, M.; Forli, S.; Houk, K.; Shenvi, R. A. Synthetic, Mechanistic and Biological Interrogation of Ginkgo biloba Chemical Space en route to (–)-Bilobalide. J. Am. Chem. Soc. 2020, 142, 18599–18618.ChemRxiv DOI: 10.26434/ chemrxiv.12132939.v2

  • 58. Chemical Syntheses of the salvinorin chemotype of KOR agonist

    58. Chemical Syntheses of the salvinorin chemotype of KOR agonist

    58. Hill, S. J.; Brion, A. U. C. M.; Shenvi, R. A. Chemical Syntheses of the salvinorin chemotype of KOR agonist. Nat. Prod. Rep. 2020, 37, 1478–1496.

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