Synthesis of PtRu/C-CNTs electrocatalysts for DMFCs with treated-CNTs and composition regulation

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Abstract

In the present work, PtRu/C-CNTs catalyst samples were studied for potential applications in direct methanol fuel cells (DMFCs). Carbon nanotubes (CNTs) were treated by H2SO498% and HNO365% at different temperatures and with different stirring periods. As a result, the PtRu/CCNTs catalyst was successfully synthesized by using H2PtCl6and RuCl3precursors with the efficient reduction of NaBH4agent in ethylene glycol (e.g.). In addition, we controlled the ratios of treated-CNTs on carbon vulcan XC-72 treated-CNTs substrate (C-CNTs) with the different values: 50 wt%, 25 wt%, and 12.5 wt%, respectively. The PtRu/C-CNTs electrocatalyst samples were investigated by experimental methods including x-ray diffraction (XRD), transmission electron microscopy (TEM), and cyclic voltammetry (CV). Importantly, the CV results show the best treated-CNTs and the most suitable ratio of CNTs composition on C-CNTs substrate to be controlled in order to produce various efficient PtRu/C-CNTs catalysts with high catalytic activity for DMFCs.

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Dang, L. Q., Nguyen, M. T., Long, N. V., Cao, M. T., Le, V. T., Nguyen, L. H. P., … Do, T. N. (2014). Synthesis of PtRu/C-CNTs electrocatalysts for DMFCs with treated-CNTs and composition regulation. Advances in Natural Sciences: Nanoscience and Nanotechnology, 5(3). https://doi.org/10.1088/2043-6262/5/3/035015

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