A direct and quantitative three-dimensional reconstruction of the internal structure of disordered mesoporous carbon with tailored pore size

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Abstract

A new technique that allows direct three-dimensional (3D) investigations of mesopores in carbon materials and quantitative characterization of their physical properties is reported. Focused ion beam nanotomography (FIB-nt) is performed by a serial sectioning procedure with a dual beam FIB-scanning electron microscopy instrument. Mesoporous carbons (MPCs) with tailored mesopore size are produced by carbonization of resorcinol-formaldehyde gels in the presence of a cationic surfactant as a pore stabilizer. A visual 3D morphology representation of disordered porous carbon is shown. Pore size distribution of MPCs is determined by the FIB-nt technique and nitrogen sorption isotherm methods to compare both results. The obtained MPCs exhibit pore sizes of 4.7, 7.2, and 18.3 nm, and a specific surface area of ca. 560 m/g. Copyright © Microscopy Society of America 2013 Â.

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Balach, J., Soldera, F., Acevedo, D. F., Mücklich, F., & Barbero, C. A. (2013). A direct and quantitative three-dimensional reconstruction of the internal structure of disordered mesoporous carbon with tailored pore size. Microscopy and Microanalysis, 19(3), 745–750. https://doi.org/10.1017/S1431927613000238

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