They say you can鈥檛 teach an old dog new tricks, but can you do new tricks with old chemical catalysts? 黑料吃瓜资源 Professor John E. Moses and his team have paired a catalyst called 鈥淏arton鈥檚 base鈥 developed in the 1980s with a new family of chemical reactions. This powerful combination results in a chemical transformation that happens within minutes or even seconds. Their new chemistry can accelerate the generation of complex molecules needed for biomedical research, drug development, and materials science.
Click chemistry enables chemical building blocks to be joined together quickly, reliably, and cleanly. A click reaction often requires a catalyst to jumpstart it. Barton鈥檚 base is so powerful that Moses only needs a small trace of it to spark a reaction. Moses says, 鈥淩educing the amount of catalyst needed for a reaction is cost-effective and beneficial to the environment.鈥
The new reaction, called accelerated SuFEx click chemistry (ASCC), also allows multiple steps to be skipped in some synthetic pathways, including the synthesis and purification of intermediate molecules. Moses says, 鈥淩emoving steps has a huge influence on the amount of waste generated from a reaction. The ASCC method will greatly enhance the 鈥榞reen credentials鈥 of SuFEx click chemistry, especially when applied on an industrial scale.鈥
Moses feels a personal connection to Barton鈥檚 base. He says, 鈥淪ir Derek Barton, who first prepared Barton鈥檚 base in the 1980s, happens to be my academic grandfather.鈥 Barton trained Moses鈥 Ph.D. advisor Sir Jack E. Baldwin at the University of Oxford. Following in the footsteps of his academic ancestors, Moses and his team continue to come up with more and more new chemistry tricks.
Written by: Luis Sandoval, Communications Specialist | [email protected] | 516-367-6826
Funding
National Cancer Institute
Citation
Smedley, C.J., et al., 鈥淎ccelerated SuFEx Click Chemistry For Modular Synthesis鈥, Angewandte Chemie, November 9, 2021. DOI:
Principal Investigator
John Moses
Professor
Cancer Center Member
Ph.D. (DPhil), University of Oxford, 2004