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Research and Teaching Interests
Our research focuses on the development of new methods for the syntheses of architecturally complex natural products. This encompasses the development of new methods for the fluorination of alkyl and aryl radicals, the use of oxygen- and nitrogen-centered radicals for the synthesis of heterocycles, organometallic reagents for the development of new bond construction techniques, the enantioselective synthesis of building blocks for total synthesis, and the development and evaluation of proposed biogenetic pathways through biomimetic synthesis. Central to efficient methods development is a fundamental understanding of reactivity and reaction mechanisms.
Our research focuses on the development of new methods for the syntheses of architecturally complex natural products. This encompasses the development of new methods for the fluorination of alkyl and aryl radicals, the use of oxygen- and nitrogen-centered radicals for the synthesis of heterocycles, organometallic reagents for the development of new bond construction techniques, the enantioselective synthesis of building blocks for total synthesis, and the development and evaluation of proposed biogenetic pathways through biomimetic synthesis. Central to efficient methods development is a fundamental understanding of reactivity and reaction mechanisms.
研究兴趣
论文共 56 篇作者统计合作学者相似作者
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William P. Chappell, Natalie Schur,James A. Vogel,Glenn M. Sammis,Patrick R. Melvin, Nicholas D. Ball
Chem (2024)
Brodie J Thomson,Samuel R Khasnavis, Emma C Grigorian, Rohun Krishnan, Theodore D Yassa,Kelvin Lee,Glenn M Sammis,Nicholas D Ball
Brodie. J. Thomson, Summer Hanna, Adrian Schwarzenberg,Pirouz Kiani, Dan Bizzotto,Pierre Kennepohl,Ashley Davies,Markus Roggen,Glenn M. Sammis
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ACS CATALYSISno. 11 (2021): 6578-6589
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D-Core
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