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Published on: August 2, 2012
Role of Stereochemistry in Controlling Magnetic Behavior in Polymeric Materials
Naushad Ahmed1, Akhil Kumar Singh1, Mani Sengoden1
1Department of Chemistry, Texas A&M University, College Station, Texas 77843, United States of America.
None:
Stable radical polymers are emerging as important functional materials for a variety of applications such as spintronics, electrical conductivity, and quantum information technologies. To better understand the magnetic behavior of such polymers, we have developed a facile synthesis of these polymeric materials via copolymerization of COS with the biobased epoxide vanillin glycidyl ether (VGE, R-VGE, or S-VGE). Importantly, this monomer contains an aldehyde-reactive group, which allows for the addition of 4-amino-TEMPO via Schiff base condensation before polymerization (PMTC-1', R-PMTC-1', and S-PMTC-1' polymers from VGE-TEMPO, R-VGE-TEMPO, or S-VGE-TEMPO, respectively) or postpolymerization (PMTC-1, R-PMTC-1, and S-PMTC-1 polymers from VGE, R-VGE, or S-VGE, respectively). We demonstrated that the polymers' tacticity controls the magnetic behaviors of these radical polymers under various applied magnetic fields. Interestingly, we noticed the magnetic switching in isotactic R-PMTC-1 (and R-PMTC-1') and S-PMTC-1 (and S-PMTC-1'). These magnetic switchable polymers are expected to be suitable for various device applications.
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