Issue 4, 2014

Ultrasonication-switched formation of dice- and cubic-shaped fullerene crystals and their applications as catalyst supports for methanol oxidation

Abstract

Three-dimensional (3D) nanostructures of an endohedral fullerene, Sc3N@C80 (Ih), including both cubic-shaped and unprecedented dice-shaped crystals, have been successfully prepared for the first time via a modified liquid–liquid interfacial precipitation (LLIP) method integrating ultrasonication. By simply switching ultrasonication on/off upon mixing the good/poor (mesitylene/isopropanol) solvents, the dice- and cubic-shaped Sc3N@C80 crystals have been selectively prepared, and their size can be readily controlled by varying the concentration of the starting Sc3N@C80 solution in mesitylene. The growth mechanism of the cubic- and dice-shaped Sc3N@C80 crystals has been proposed, highlighting the formation of local mesitylene cavities which lead to the nucleation and growth of Sc3N@C80 molecules, while the formation of the dice structure. i.e., a hole in each facet of the cube, was primarily due to the hindered diffusion of Sc3N@C80 solutes by ultrasonication-generated gas microbubbles. The crystal structure of the Sc3N@C80 cubes has been determined as a simple cubic unit cell with a lattice constant of a = 10.8 Å. Finally the dice-shaped Sc3N@C80 crystals were applied as a Pt catalyst support for the methanol oxidation reaction (MOR), revealing the improved MOR activity compared to the cubic-shaped Sc3N@C80 crystals due to its larger surface area resulting from the dice (hole) structure.

Graphical abstract: Ultrasonication-switched formation of dice- and cubic-shaped fullerene crystals and their applications as catalyst supports for methanol oxidation

Supplementary files

Article information

Article type
Communication
Submitted
28 Feb 2014
Accepted
22 Apr 2014
First published
24 Apr 2014

Mater. Horiz., 2014,1, 411-418

Ultrasonication-switched formation of dice- and cubic-shaped fullerene crystals and their applications as catalyst supports for methanol oxidation

Y. Xu, X. Chen, F. Liu, X. Chen, J. Guo and S. Yang, Mater. Horiz., 2014, 1, 411 DOI: 10.1039/C4MH00037D

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