Excited to see @ErinLang13's new work on oleylamine impurities and their impacts on nanocrystal synthesis appear in @ChemMater! @ClaridgeLab
https://t.co/piHzGZ9QPc
Thanks to @leal_prof for a fantastic (virtual) talk at @PurdueChemistry on designing fusogenic capabilities into lipid nanoparticles for RNA delivery! #Lipids are the best.
Yes and yes, from a very nice perspective by @SAClaridge. While suppliers figuring out their part, us, researchers, should consider doing quality checks (NMR, mass, FTIR) of a surfactant bottle that lasts N number of syntheses and report/deposit/keep track of these data.
Trouble with tech-grade oleylamine? Read our short perspective in @IOPPublishing Nanotechnology to learn about oleylamine’s (occasionally) beefy and (frequently) variable origins, and impacts on nanocrystals:
https://t.co/COfdDqGnS4
@SAClaridge
Excited to see the group's work on designing monomers for efficient nm-resolution polymer patterning appear in @angew_chem. Congrats to @AnniShi_Chem and other @ClaridgeLab members who contributed!
Lipids are important everywhere -- from lubricants, mining, and soaps, to nanocrystal ligands and COVID-19 vaccines.
Excited to see our perspective article on the history and future of lipid materials in @acsnano!
https://t.co/tZGaP0Th4n
Glad to see the @ClaridgeLab work on patterning surfaces to interact with polyelectrolytes appear in @ACS_ANM! Congrats to authors including @jcarango1946
https://t.co/ppvNxMhHn9
Have you ever wondered how tech grade oleylamine impacts your nanocrystal ligand shells? Some bottles solidify in the lab on a cool day. Others don't. Does this matter? Erin's new work in @acsnano shows how this impacts assembly of gold nanowires. https://t.co/ltPBB4JNZC