Stephenson Lab
@stephensonlabubc.bsky.social
Harnessing Radicals in Organic Synthesis since 2007 ⚡️💡🔌 🏳️🌈|| @UBCChem.bsky.social; @UBCBiochemistry || PI: @coreystephenson.bsky.social || Student-Run Account
https://www.thestephensongroup.org/
https://www.thestephensongroup.org/
We had a great lunch for Olaya's last day! Have a safe trip back to Spain
July 31, 2025 at 12:46 AM
We had a great lunch for Olaya's last day! Have a safe trip back to Spain
Come check out our group's chemistry at CSC!
June 16, 2025 at 4:55 PM
Come check out our group's chemistry at CSC!
Check out our most recent work in collaboration with Maldonado group and Sigman group out now in ACS Central Science!
Congrats to former member Cheng along with Thérèse, and Yulia!
Read more about it here:
pubs.acs.org/doi/10.1021/...
Congrats to former member Cheng along with Thérèse, and Yulia!
Read more about it here:
pubs.acs.org/doi/10.1021/...
Data-Driven Workflow for the Development and Discovery of <italic toggle="yes">N</italic>-Oxyl Hydrogen Atom Transfer Catalysts
N-oxyl species are promising hydrogen atom transfer (HAT) catalysts to advance C–H bond activation reactions. However, because of the complex structure–activity relationship within the N-oxyl structure, catalyst optimization is a key challenge, particularly for simultaneous improvement across multiple parameters. This paper describes a data-driven approach to optimize N-oxyl hydrogen atom transfer catalysts. A focused library of 50 N-hydroxy compounds was synthesized and characterized by three parameters─oxidation peak potential, HAT reactivity, and stability─to generate a database. Statistical modeling of these activities described by their intrinsic physical organic parameters was used to build predictive models for catalyst discovery and to understand their structure–activity relationships. Virtual screening of 102 synthesizable candidates allowed for rapid identification of several ideal catalyst candidates. These statistical models clearly suggest that N-oxyl substructures bearing an adjacent heteroatom are more optimal HAT catalysts compared to the historical focus, phthalimide-N-oxyl, by striking the best balance among all three target experimental properties.
pubs.acs.org
March 24, 2025 at 7:49 PM
Check out our most recent work in collaboration with Maldonado group and Sigman group out now in ACS Central Science!
Congrats to former member Cheng along with Thérèse, and Yulia!
Read more about it here:
pubs.acs.org/doi/10.1021/...
Congrats to former member Cheng along with Thérèse, and Yulia!
Read more about it here:
pubs.acs.org/doi/10.1021/...
Moving into our new lab @ubcchem.bsky.social with the Schindlers!
Stay tuned for some upcoming, exciting chemistry!
Stay tuned for some upcoming, exciting chemistry!
January 28, 2025 at 2:32 AM
Moving into our new lab @ubcchem.bsky.social with the Schindlers!
Stay tuned for some upcoming, exciting chemistry!
Stay tuned for some upcoming, exciting chemistry!
Skiing with the Schindler group at Cypress Mountain with the added bonus of clear skies to see the beautiful Vancouver skyline at night!
January 21, 2025 at 1:20 AM
Skiing with the Schindler group at Cypress Mountain with the added bonus of clear skies to see the beautiful Vancouver skyline at night!
With heavy hearts, we bid farewell to our visiting student Xuli from Santiago de Compostela. We hope you had a great time with us and have a safe trip back home!
December 20, 2024 at 8:04 PM
With heavy hearts, we bid farewell to our visiting student Xuli from Santiago de Compostela. We hope you had a great time with us and have a safe trip back home!
Happy Holidays from the Stephenson and Schindler labs! Wishing everyone a well deserved rest and successful reactions in the new year to come!
December 17, 2024 at 9:56 PM
Happy Holidays from the Stephenson and Schindler labs! Wishing everyone a well deserved rest and successful reactions in the new year to come!