4.6 Article

Advantages of electrodes with dendrimer-protected platinum nanoparticles and carbon nanotubes for electrochemical methanol oxidation

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 15, Issue 14, Pages 4921-4929

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c3cp43636e

Keywords

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Funding

  1. National Science Council, Taiwan
  2. Consejo Superior de Investigaciones Cientificas, Spain
  3. Department of Science and Technology, India [NSC 99-2923-M-011-001-MY3, NSC 99-2923-M-011-002-MY3]
  4. National Taiwan University of Science and Technology, Taiwan [100H451201]
  5. National Taiwan University of Science and Technology, Taiwan

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Electrochemical sensors consisting of electrodes loaded with carbon nanotubes and Pt nanoparticles (PtNPs) protected by dendrimers have been developed using a facile method to fabricate them on two types of disposable electrochemical printed chips with a screen-printed circular gold or a screen-printed circular glassy carbon working electrode. The electrochemical performance of these sensors in the oxidation of methanol was investigated by cyclic voltammetry. It was revealed that such sensors possess stable durability and high electrocatalytic activity: the potential and the current density of an anodic peak in the oxidation of methanol increased with increasing content of PtNPs on the electrodes, indicating the promotion of electrocatalytic activity in relation to the amount of catalyst. The low anodic potential suggests the easy electrochemical reaction, and the high catalyst tolerance supports the almost complete oxidation of methanol to carbon dioxide. The significant performance of these sensors in the detection of methanol oxidation comes from the high electrocatalytic ability of PtNPs, excellent energy transfer of carbon nanotubes and the remarkable ability of dendrimers to act as binders. Thus these systems are effective for a wide range of applications as chemical, biomedical, energy and environmental sensors and as units of direct methanol fuel cells.

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