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Elsevier, Materials Chemistry and Physics: Including Materials Science Communications, 3(143), p. 1489-1499, 2014

DOI: 10.1016/j.matchemphys.2013.12.005

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Effect of the surface chemical groups of activated carbons on their surface adsorptivity to aromatic adsorbates based on π-π Interactions

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This paper is available in a repository.

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Abstract

Three activated carbons with different surface chemical groups were used to analyse the influence of these groups on their adsorption capacities towards aromatic-type molecules whose adsorption is based on pi-pi interactions with surface arene centres. The three activated carbons studied were a low-functionalized carbon (Merck), an oxygen-rich carbon obtained by HNO3 oxidation of Merck, and a nitrogen-rich carbon also prepared from Merck by mild HNO3 oxidation followed by treatment with a dicyanodiamide/dimethyl formamide mixture at 300 degrees C. The nature of the surface chemical groups of the three activated carbons was investigated by both physical and chemical techniques (TPD, XPS, Boehm analysis and pH potentiometric titration). A systematic study of the adsorptions of a series of analogous aromatic adsorbates on the three activated carbons was carried out to study the adsorption mechanisms. In all cases the adsorption mechanism is based on pi-pi interactions between the aromatic moiety of the adsorbates and the arene centres of the graphite sheets. The differences in the normalized adsorption capacities of the adsorbents for a set of adsorbates indicate that the pi-donor or pi-withdrawing character of the functional groups have a clear influence on the basicity of the arene centres.