scholarly journals Tailoring properties of platinum supported catalysts by irreversible adsorbed adatoms toward ethanol oxidation for direct ethanol fuel cells

2013 ◽  
Vol 140-141 ◽  
pp. 378-385 ◽  
Author(s):  
Marta C. Figueiredo ◽  
Annukka Santasalo-Aarnio ◽  
Francisco J. Vidal-Iglesias ◽  
José Solla-Gullón ◽  
Juan M. Feliu ◽  
...  
2013 ◽  
Vol 53 (28) ◽  
pp. 23-30
Author(s):  
B. B. L. Reeb ◽  
N. Kluy ◽  
O. Schneider ◽  
U. Stimming

Author(s):  
Si Li ◽  
Anxiang Guan ◽  
Huining Wang ◽  
Yaqin Yan ◽  
Haoliang Huang ◽  
...  

The electrocatalytic ethanol oxidation reaction (EOR) is a critical component for direct ethanol fuel cells, while its reactivity, stability, and selectivity toward C1 products are severely hindered by the poisoning...


Author(s):  
Cong Shen ◽  
Hanming Chen ◽  
Mingye Qiu ◽  
Yuqiang Shi ◽  
Wei Yan ◽  
...  

The sluggish kinetics of ethanol oxidation reaction (EOR), poor C1 selectivity and susceptibility to toxicity of CO intermediates hinder the commercialization of direct ethanol fuel cells (DEFCs). In this paper,...


Nanoscale ◽  
2019 ◽  
Vol 11 (6) ◽  
pp. 2974-2980 ◽  
Author(s):  
Zhijuan Li ◽  
Yifan Chen ◽  
Gengtao Fu ◽  
Yang Chen ◽  
Dongmei Sun ◽  
...  

A novel catalyst of porous PdRh nanobowls with open porosity has been developed by using urea as a guiding surfactant. Benefiting from the compositional and structural advantages, the newly developed PdPh NBs exhibits outstanding electrocatalytic activity for the EOR which might make them good anodic candidates for direct ethanol fuel cells.


Processes ◽  
2020 ◽  
Vol 8 (6) ◽  
pp. 712
Author(s):  
Alexandra Kuriganova ◽  
Daria Chernysheva ◽  
Nikita Faddeev ◽  
Igor Leontyev ◽  
Nina Smirnova ◽  
...  

Pt/C, PtMOn/C (M = Ni, Sn, Ti, and PtX/C (X = Rh, Ir) catalyst systems were prepared by using the pulse alternating current (PAC) technique. Physical and electrochemical parameters of samples were carried out by x-ray powder diffraction (XRD), transmission electron microscopy (TEM), and CO stripping. The catalytic activity of the synthesized samples for the ethanol electrooxidation reaction (EOR) was investigated. The XRD patterns of the samples showed the presence of diffraction peaks characteristic for Pt, NiO, SnO2, TiO2, Rh, and Ir. The TEM images indicate that the Pt, Rh, and PtIr (alloys) particles had a uniform distribution over the carbon surface in the Pt/C, PtRh/C, PtIr/C, and PtMOn/C (M = Ni, Sn, Ti) catalysts. The electrochemically active surface area of catalysts was determined by the CO-stripping method. The addition of a second element to Pt or the use of hybrid supported catalysts can evidently improve the EOR activity. A remarkable positive affecting shift of the onset potential for the EOR was observed as follows: PtSnO2/C > PtTiO2/C ≈ PtIr/C ≈ PtNiO/C > PtRh/C ≈ Pt/C. The addition of SnO2 to Pt/C catalyst led to the decrease of the onset potential and to significantly facilitate the EOR. The long-term cyclic stability of the synthesized catalysts was investigated. Thereby, the PtSnO2/C catalyst prepared by the PAC technique can be considered as a promising anode catalyst for direct ethanol fuel cells.


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