Alison Wendlandt
Researcher
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Chemistry
Alison Wendlandt's Degrees
- Bachelors Chemistry University of California, Berkeley
Why Is Alison Wendlandt Influential?
(Suggest an Edit or Addition)According to Wikipedia, Alison Wendlandt is an American chemist who is an assistant professor at the Massachusetts Institute of Technology. Her research considers the development of catalysts for organic synthesis. Early life and education Wendlandt is from Colorado. She earned her bachelor's degree in chemistry at the University of Chicago. She was started a master's degree at Yale University. Her graduate research had initially considered chemical biology: how certain molecules interact human health. During her research she became more interested in reaction processes and what she could do to make them more efficient. She moved to Wisconsin for her doctoral studies, where she worked alongside Shannon Stahl on the development of catalysts that mediate amine oxidation. She then joined Harvard University as a postdoctoral fellow working alongside Eric Jacobsen.
Alison Wendlandt's Published Works
Published Works
- Copper-catalyzed aerobic oxidative C-H functionalizations: trends and mechanistic insights. (2011) (1069)
- Quinone-Catalyzed Selective Oxidation of Organic Molecules. (2015) (234)
- Bioinspired aerobic oxidation of secondary amines and nitrogen heterocycles with a bifunctional quinone catalyst. (2014) (156)
- Modular o-Quinone Catalyst System for Dehydrogenation of Tetrahydroquinolines under Ambient Conditions (2014) (127)
- Chemoselective organocatalytic aerobic oxidation of primary amines to secondary imines. (2012) (123)
- Quaternary Stereocenters via an Enantioconvergent Catalytic SN1 Reaction (2018) (118)
- Synthesis of rare sugar isomers through site-selective epimerization (2020) (85)
- Copper(II)-mediated oxidative cyclization of enamides to oxazoles. (2012) (55)
- Replacement of Stoichiometric DDQ with a Low Potential o-Quinone Catalyst Enabling Aerobic Dehydrogenation of Tertiary Indolines in Pharmaceutical Intermediates. (2019) (27)
- Synthesis and Characterization of Pseudocantharidins, Novel Phosphatase Modulators That Promote the Inclusion of Exon 7 into the SMN (Survival of Motoneuron) pre-mRNA* (2011) (25)
- A Unified Strategy to Access 2- and 4-Deoxygenated Sugars Enabled by Manganese-Promoted 1,2-Radical Migration. (2021) (18)
- Catalytic, contra-Thermodynamic Positional Alkene Isomerization. (2021) (17)
- A Change from Kinetic to Thermodynamic Control Enables trans-Selective Stereochemical Editing of Vicinal Diols. (2021) (17)
- Selective Transformations of Carbohydrates Inspired by Radical-Based Enzymatic Mechanisms. (2021) (13)
- Quinones in Hydrogen Peroxide Synthesis and Catalytic Aerobic Oxidation Reactions (2016) (10)
- Synthesis and functional analysis of novel bivalent estrogens (2010) (9)
- Site-selective, stereocontrolled glycosylation of minimally protected sugars (2022) (9)
- Selective Axial-to-Equatorial Epimerization of Carbohydrates. (2022) (8)
- Quaternary stereocentres via an enantioconvergent catalytic SN1 reaction (2018) (4)
- Stereochemical editing logic powered by the epimerization of unactivated tertiary stereocenters (2022) (4)
- - 1-Synthesis and Characterization of Pseudocantharidins , Novel Phosphatase Modulators That Promote the Inclusion of Exon 7 into the Survival of Motoneuron ( SMN ) pre-mRNA (2011) (3)
- Photocatalytic deracemization fixes the mix (2019) (3)
- Synthesis of a norcantharidin-tethered guanosine: Protein phosphatase-1 inhibitors that change alternative splicing. (2016) (1)
- Modular o‐Quinone Catalyst System for Dehydrogenation of Tetrahydroquinolines under Ambient Conditions. (2015) (1)
- Synthesis and Characterization of Pseudocantharidins, Novel Phosphatase Modulators That Promote the Inclusion of Exon (2011) (0)
- Copper‐Catalyzed Aerobic Oxidative C—H Functionalizations: Trends and Mechanistic Insights. (2012) (0)
- Catalytic, contra-Thermodynamic Alkene Isomerization (2021) (0)
- A stable alternative to an explosive synthetic reaction (2022) (0)
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