Solvothermal synthesis of superhydrophobic hollow carbon nanoparticles from a fluorinated alcohol

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Abstract

A new and simple method of synthesizing fluorinated carbon at the gram scale is presented by reacting a fluorinated alcohol with sodium at elevated temperatures in a sealed Teflon reactor. The resulting carbon nanoparticles are around 100 nm in diameter, and display a hollow shell morphology, with a significant amount of fluorine doped into the carbon. The nanoparticles disperse easily in ethanol, and are thermally stable up to 400°C and 450°C under air and nitrogen, respectively. The nanoparticle dispersion was printed onto various substrates (paper, cloth, silicon), inducing superhydrophobicity.

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Lyth, S. M., Ma, W., Liu, J., Daio, T., Sasaki, K., Takahara, A., & Ameduri, B. (2015). Solvothermal synthesis of superhydrophobic hollow carbon nanoparticles from a fluorinated alcohol. Nanoscale, 7(38), 16087–16093. https://doi.org/10.1039/c5nr03484a

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