Eric N. Jacobsen
Affiliations: | Chemistry and Chemical Biology | Harvard University, Cambridge, MA, United States |
Area:
Mechanistic and synthetic chemistryWebsite:
http://www.chem.harvard.edu/groups/Jacobsen/Google:
"Eric Jacobsen"Bio:
http://www.nasonline.org/member-directory/members/2537835.html
http://www.chem.harvard.edu/groups/Jacobsen/about.htm
http://www.chemistry.illinois.edu/events/lectures/CS_Marvel_Lecture_Series_in_Organic_Chemistry/Eric_Jacobsen.html
Mean distance: 6.18 | S | N | B | C | P |
Parents
Sign in to add mentorYorke E. Rhodes | research assistant | 1982 | NYU | |
Robert G. Bergman | grad student | 1986 | UC Berkeley | |
(Synthesis and Reactions of Dinuclear Transition Metal Complexes Containing Bridging Ligands Relevant to Heterogeneous Catalysis) | ||||
K. Barry Sharpless | post-doc | 1986-1988 | MIT |
Children
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Publications
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Blackburn MAS, Wagen CC, Bodrogean MR, et al. (2023) Dual-Hydrogen-Bond Donor and Brønsted Acid Cocatalysis Enables Highly Enantioselective Protio-Semipinacol Rearrangement Reactions. Journal of the American Chemical Society |
Ovian JM, Vojáčková P, Jacobsen EN. (2023) Enantioselective Transition-Metal Catalysis via an Anion-Binding Approach. Nature |
Samha MH, Wahlman JLH, Read JA, et al. (2022) Exploring Structure-Function Relationships of Aryl Pyrrolidine-Based Hydrogen-Bond Donors in Asymmetric Catalysis Using Data-Driven Techniques. Acs Catalysis. 12: 14836-14845 |
Wagen CC, Jacobsen EN. (2022) Evidence for Oxonium Ions in Ethereal "Hydrogen Chloride". Organic Letters |
Wagen CC, McMinn SE, Kwan EE, et al. (2022) Screening for Generality in Asymmetric Catalysis. Nature |
Kutateladze DA, Wagen CC, Jacobsen EN. (2022) Chloride-Mediated Alkene Activation Drives Enantioselective Thiourea and Hydrogen Chloride Co-Catalyzed Prins Cyclizations. Journal of the American Chemical Society |
Li Q, Levi SM, Wagen C, et al. (2022) Site-selective, stereocontrolled glycosylation of minimally protected sugars. Nature |
Kutateladze DA, Jacobsen EN. (2021) Cooperative Hydrogen-Bond-Donor Catalysis with Hydrogen Chloride Enables Highly Enantioselective Prins Cyclization Reactions. Journal of the American Chemical Society |
Sharma HA, Essman JZ, Jacobsen EN. (2021) Enantioselective catalytic 1,2-boronate rearrangements. Science (New York, N.Y.). 374: 752-757 |
Strassfeld DA, Algera RF, Wickens ZK, et al. (2021) A Case Study in Catalyst Generality: Simultaneous, Highly-Enantioselective Brønsted- and Lewis-Acid Mechanisms in Hydrogen-Bond-Donor Catalyzed Oxetane Openings. Journal of the American Chemical Society |