Abstract
Stable aqueous suspensions of nC 60 and individual higher fullerenes, i.e. C 70, C 76 and C 84, are prepared by a calorimetric modification of a commonly used liquidliquid extraction technique. The energy requirement for synthesis of higher fullerenes has been guided by molecular-scale interaction energy calculations. Solubilized fullerenes show crystalline behavior by exhibiting lattice fringes in high resolution transmission electron microscopy images. The fullerene colloidal suspensions thus prepared are stable with a narrow distribution of cluster radii (42.70.8nm, 46.014.0nm, 603.2nm and 56.31.1nm for nC 60, nC 70, nC 76 and nC 84, respectively) as measured by time-resolved dynamic light scattering. The -potential values for all fullerene samples showed negative surface potentials with similar magnitude (38.65.8mV, 39.14.2mV, 38.95.8mV and 41.75.1mV for nC 60, nC 70, nC 76 and nC 84, respectively), which provide electrostatic stability to the colloidal clusters. This energy-based modified solubilization technique to produce stable aqueous fullerenes will likely aid in future studies focusing on better applicability, determination of colloidal properties, and understanding of environmental fate, transport and toxicity of higher-order fullerenes.
| Original language | English |
|---|---|
| Article number | 055705 |
| Journal | Nanotechnology |
| Volume | 23 |
| Issue number | 5 |
| DOIs | |
| State | Published - Feb 10 2012 |
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