Matthew V. Joannou
@chicagochemo.bsky.social
Inorganic chemist masquerading as a process chemist at Bristol Myers Squibb 💃👨🔬
Ah yes, the elusive oxygen isotope 178-O, can only be found at a rest stop halfway between Istanbul and Kuşadası in Susurluk, Turkiye 🤓 amazing panini sold there as well #realtimechem #isotopes #goturkiye
I see a pattern here...happy to share another story about advancing Base Metal Catalysis on scale! This time, a Ni-Borylation followed by a Pd-Suzuki coupling, Ni and Pd can definitely be friends 😊 Congrats to all the co-authors! #BMSChemistry pubs.acs.org/doi/10.1021/...
Advancing Base Metal Catalysis: Development and Execution of a Ni-catalyzed Borylation/Pd-catalyzed Suzuki Telescoped Process
The development and execution of a nickel-catalyzed borylation/palladium-catalyzed Suzuki telescoped process utilizing the inexpensive NiCl2·6H2O precatalyst for the borylation step are reported. The ...
pubs.acs.org
So excited to share our work on learning more about EAM catalysis on scale! Featuring two of our favorites: nickel and boron 🤓 Who knew there were so many ways to make hydrogen in a borylation reaction 🤪 Congrats to all the co-authors! #BMSChemistry pubs.acs.org/doi/10.1021/...
Development of an Inherently Safe and Scalable Nickel-Catalyzed Borylation Process of an Aryl Sulfamate
A safe and scalable synthesis of A, a key aryl boronate ester intermediate toward an immunology asset udifitimod, via a Ni-catalyzed Miyaura borylation is reported. High-throughput experimentation, design of experiment, and reagent stability/compatibility studies were used to optimize the reaction conditions and furnish the borylation of aryl sulfamate B in 80–85% yield and >98% purity/potency. Significant hydrogen off-gassing was observed during the reaction, metal remediation, and crystallization steps of the first-generation process, and efforts were made to quantify, understand, and mitigate this off-gassing to ensure a safe and reliable scale-up. Two multikilogram batches of the process were successfully run to afford A in an average 85% yield, >99% potency, and ≤28 ppm residual Ni. Using the mechanistic learnings from this work, a second-generation process was developed which significantly reduced hydrogen off-gassing at all steps of the process, as well as increasing final yield and reducing process mass intensity. This second-generation process was demonstrated on a 1 kg scale to afford the product in 90% yield, >99% purity/potency, and 50 ppm residual Ni.
pubs.acs.org
I'm colorblind so it took me a while to find this place. Anything good here? 😊