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Christopher S Jeffrey

Showing results (1-10 of 32) with videos related to

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Organic Letters|January 29, 2016
Oxidative (3 + 2) Cycloaddition Reactions of Diaza-Oxyallyl Cationic Intermediates and Indoles for the Synthesis of ImidazoloindolinesDevendar Anumandla, Arjun Acharya, Christopher S Jeffrey
Organic Letters|September 13, 2014
Oxidative 1,4-diamination of dienes using simple urea derivativesDevendar Anumandla, Ryan Littlefield, Christopher S Jeffrey
Journal of the American Chemical Society|November 13, 2015
Dearomative Indole Cycloaddition Reactions of Aza-Oxyallyl Cationic Intermediates: Modular Access to PyrroloindolinesArjun Acharya, Devendar Anumandla, Christopher S Jeffrey
Organic Letters|December 10, 2016
Access to 4-Oxazolidinones: A (3 + 2) Cycloaddition ApproachArjun Acharya, Karissa Montes, Christopher S Jeffrey
Nature Protocols|October 20, 2007
Mosher ester analysis for the determination of absolute configuration of stereogenic (chiral) carbinol carbonsThomas R Hoye, Christopher S Jeffrey, Feng Shao
Organic Letters|November 8, 2012
1,4-Diamination of cyclic dienes via a (4 + 3) cycloaddition of diaza-allyl cationic intermediatesChristopher S Jeffrey, Devendar Anumandla, Christopher R Carson
Organic Letters|December 1, 2009
A hypervalent iodine-induced double annulation enables a concise synthesis of the pentacyclic core structure of the cortistatinsJessica L Frie, Christopher S Jeffrey, Erik J Sorensen
Organic Letters|December 9, 2009
Dynamic kinetic resolution during a vinylogous Payne rearrangement: a concise synthesis of the polar pharmacophoric subunit of (+)-scyphostatinThomas R Hoye, Christopher S Jeffrey, Dorian P Nelson
Iscience|August 9, 2022
Discovery of octopamine and tyramine in nectar and their effects on bumblebee behaviorFelicity Muth, Casey S Philbin, Christopher S Jeffrey, et al.
Journal of the American Chemical Society|May 4, 2011
Generation and reactivity of aza-oxyallyl cationic intermediates: aza-[4 + 3] cycloaddition reactions for heterocycle synthesisChristopher S Jeffrey, Korry L Barnes, John A Eickhoff, et al.
Pageof 4

Showing results (1-10 of 32) with videos related to

Sort By:
Pageof 4
Organic Letters|January 29, 2016
Oxidative (3 + 2) Cycloaddition Reactions of Diaza-Oxyallyl Cationic Intermediates and Indoles for the Synthesis of ImidazoloindolinesDevendar Anumandla, Arjun Acharya, Christopher S Jeffrey
Organic Letters|September 13, 2014
Oxidative 1,4-diamination of dienes using simple urea derivativesDevendar Anumandla, Ryan Littlefield, Christopher S Jeffrey
Journal of the American Chemical Society|November 13, 2015
Dearomative Indole Cycloaddition Reactions of Aza-Oxyallyl Cationic Intermediates: Modular Access to PyrroloindolinesArjun Acharya, Devendar Anumandla, Christopher S Jeffrey
Organic Letters|December 10, 2016
Access to 4-Oxazolidinones: A (3 + 2) Cycloaddition ApproachArjun Acharya, Karissa Montes, Christopher S Jeffrey
Nature Protocols|October 20, 2007
Mosher ester analysis for the determination of absolute configuration of stereogenic (chiral) carbinol carbonsThomas R Hoye, Christopher S Jeffrey, Feng Shao
Organic Letters|November 8, 2012
1,4-Diamination of cyclic dienes via a (4 + 3) cycloaddition of diaza-allyl cationic intermediatesChristopher S Jeffrey, Devendar Anumandla, Christopher R Carson
Organic Letters|December 1, 2009
A hypervalent iodine-induced double annulation enables a concise synthesis of the pentacyclic core structure of the cortistatinsJessica L Frie, Christopher S Jeffrey, Erik J Sorensen
Organic Letters|December 9, 2009
Dynamic kinetic resolution during a vinylogous Payne rearrangement: a concise synthesis of the polar pharmacophoric subunit of (+)-scyphostatinThomas R Hoye, Christopher S Jeffrey, Dorian P Nelson
Iscience|August 9, 2022
Discovery of octopamine and tyramine in nectar and their effects on bumblebee behaviorFelicity Muth, Casey S Philbin, Christopher S Jeffrey, et al.
Journal of the American Chemical Society|May 4, 2011
Generation and reactivity of aza-oxyallyl cationic intermediates: aza-[4 + 3] cycloaddition reactions for heterocycle synthesisChristopher S Jeffrey, Korry L Barnes, John A Eickhoff, et al.
Pageof 4