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SANS structural characterization of fullerenol-derived star polymers in solutions
Journal article   Peer reviewed

SANS structural characterization of fullerenol-derived star polymers in solutions

U.-S. Jeng, T.-L. Lin, L.Y. Wang, L.Y. Chiang, D.L. Ho and C.C. Han
Applied Physics A: Materials Science and Processing, Vol.74(SUPPL.I)
12/2002

Abstract

We have studied the chain conformations of fullerenol-derived star polymers in two organic solvents using small-angle neutron scattering (SANS). The SANS results indicate that the six poly(urethane-ether) arms, chemically bonded on the fullerenol of the C 60 -based star polymer, have a Gaussian chain conformation in toluene. However, these arms exhibit a pronounced excluded-volume effect in dimethylformamide solutions. We use a scattering model, with the polydispersity of the polymer taken into account, and a fractal model to extract the radius of gyration R g values and the persistence lengths of the C 60 -star polymers in these two organic solutions.

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