CK Lab at #acsfall2025!
Meet our chiral and degradable polymers.
Cheoljae - #4307029 Oral presentation Tuesday PM4:20 at Hall D Room9
Dayong - #4298781 Poster Tuesday PM6:00 Poster Board #022
You can see Dayong in #SciMix on Monday evening, too!
Kim's research group at JBNU (https://t.co/RkFMjILAKo) has one postdoctoral position available immediately. Primary hire will be on polymer synthesis and mechanochemistry. Strong candidates in organic synthesis are also considered. Please send CV to [email protected]
⚡️Open Postdoc Position⚡️
We are hiring a postdoc in electroorganic synthesis with 3d transition metal catalysis.
The position starts on September 1 or October 1. Applications are due by July 18.
Please see details: https://t.co/r3VTa04CXq
#Chempostdoc#Chemtwitter@chemjobber
Our recent paper was selected as a Supplementary Cover of #Macromolecules. The cover art illustrates the precise design and controllable polymerization and depolymerization of the polymer through selective bond formation and cleavage.
#MyACSCover@ACSPublications
Happy to share our new paper in Macromolecules on recyclable chiral polymers!
From chiral monomer design and metathesis equilibrium control to acetal degradation and click functionalization — a full journey in one study.
#Macromolecules
https://t.co/KcAmBEboQw
@Ella_Maru Thank you. In general, as the acid concentration increases, hydrolysis is accelerated, resulting in rapid degradation of the polymer backbone. Depolymerization into monomers proceeds faster under more dilute conditions, at higher temperatures, and with increased catalyst loading.
Happy to share our new paper in Macromolecules on recyclable chiral polymers!
From chiral monomer design and metathesis equilibrium control to acetal degradation and click functionalization — a full journey in one study.
#Macromolecules
https://t.co/KcAmBEboQw
CK Lab's first study on brush polymer synthesis has been published. I sincerely thank Professor Woo-Dong Jang at Yonsei University for the opportunity to collaborate on this wonderful research. #MacromolecularRapidCommunications
https://t.co/NvhgntZqNE
Ring-Opening Metathesis Polymerization of 1,2-Dihydroazete Derivatives (Will R. Gutekunst and co-workers) @willgute#openaccess 🔓 https://t.co/H0d5RAaBYy
We have an urgent opening of fully funded postdoc position at KAIST! If you are down for photocatalysis and skeletal edit, shoot me an email with CV! RT appreciated 🙏🏻
Mechanochemical synthesis is not only a way to promote green chemistry but also a powerful technique that overcomes conventional wet chemistry.
Very cool chemistry!
Always want to study this!🤩
Mechanochemistry could broaden the horizon of synthetic chemistry. In this macromolecules paper, we prove that the polymerization of ionic monomers in ball milling can provide a wide scope, including copolymerization with orthogonally soluble monomers. https://t.co/coLJxojfOU