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Analytical and preparative separation and isolation of functionalized fullerenes by conventional HPLC stationary phases: method development and column screening.


ABSTRACT: Isolation and purification of functionalized fullerenes from often complex reaction mixtures is challenging due to the hydrophobic nature and low solubility in regular organic solvents. We have developed an HPLC method that efficiently, employing regular reversed phase stationary phases, separates not only C60 from C70 in a model mixture, but also C60 monoadducts from polyadducts and unreacted C60 from fulleropyrrolidine and hydroarylation example reaction mixtures. Six HPLC columns with regular reversed phase stationary phases were evaluated using varying proportions of acetonitrile in toluene as eluent; with C18 and C12 stationary phases with high surface area (450-400 m2 g-1) being the most efficient regarding separation efficiency and analysis time for all mixtures. The analytical method is effectively transferrable to a preparative scale to isolate the monoaddition products from complex fullerene reaction mixtures.

SUBMITTER: Ergun Donmez M 

PROVIDER: S-EPMC9054065 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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Analytical and preparative separation and isolation of functionalized fullerenes by conventional HPLC stationary phases: method development and column screening.

Ergun Dönmez Merve M   Grennberg Helena H  

RSC advances 20200520 33


Isolation and purification of functionalized fullerenes from often complex reaction mixtures is challenging due to the hydrophobic nature and low solubility in regular organic solvents. We have developed an HPLC method that efficiently, employing regular reversed phase stationary phases, separates not only C<sub>60</sub> from C<sub>70</sub> in a model mixture, but also C<sub>60</sub> monoadducts from polyadducts and unreacted C<sub>60</sub> from fulleropyrrolidine and hydroarylation example reac  ...[more]

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