The Journal of Physical Chemistry Letters · 2015 · 52 citations · 18 references
EngineeringClose PackingOrganic ChemistryChemistryMolecular PolymerPolymersRadical ConcentrationPolymer TechnologyNitroxide RadicalsRadical Polymer PolyPolymer ChemistryMaterials ScienceRadical (Chemistry)Polymer EngineeringPhysical ChemistryRadical PackingPolymer SciencePolymerization KineticsPolymer Reaction
The relationship between the polymer network and electronic transport properties for stable radical polymeric materials has come under investigation owing to their potential application in electronic devices. For the radical polymer poly(2,2,6,6-tetramethylpiperidine-4-yl-1-oxyl methacrylate), it is unclear whether the radical packing is optimal for charge transport partially because the relationship between radical packing and molecular structure is not well-understood. Using the paramagnetic nitroxide radical as a probe of the polymer and synthetic techniques to control the radical concentration on the methyl methacrylate backbone, we investigate the dependence of radical concentration on molecular structure. The electron paramagnetic resonance data indicate that radicals in the PTMA assume a closest approach distance to each other when more than 60% of the backbone is populated with radical pendant groups. Below 60% coverage, the polymer rearranges to accommodate larger radical-radical spacing. These findings are consistent with theoretical calculations and help explain some experimentally determined electron-transport properties.
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Hybrid supercapacitor-battery materials for fast electrochemical charge storage
Alexandru Vlad, Neelam Singh, Julien Rolland et al. · Scientific Reports · 2014 · 331 citations · Full text
Sandra S. Eaton, Kundalika M. More, Bhimrao M. Sawant et al. · Journal of the American Chemical Society · 1983 · 279 citations
Engineering, Esr Half-field Transition, Computational Chemistry +18