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148
36.
UA Paulus, TJ Schmidt, HA Gasteiger and RJ Behm,
Oxygen reduction on a high-surface area
Pt/Vulcan carbon catalyst: a thin-film rotating ring-disk electrode study
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37.
TJ Schmidt, UA Paulus, HA Gasteiger and RJ Behm,
The oxygen reduction reaction on a
Pt/carbon fuel cell catalyst in the presence of chloride anions
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508 (2001) 41-47.
38.
G Brisard, N Bertranda, PN Ross and NM Markovic,
Oxygen reduction and hydrogen evolution
–
oxidation reactions on Cu(hkl) surfaces
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39.
L Geniès, R Faure and R Durand,
Electrochemical reduction of oxygen on platinum
nanoparticles in alkaline media
, Electrochimica Acta 44 (1998) 1317-1327.
40.
E Higuchia, H Uchidab and M Watanabe,
Effect of loading level in platinum-dispersed carbon
black electrocatalysts on oxygen reduction activity evaluated by rotating disk electrode
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Electroanalytical Chem. 583 (2005) 69-76.
41.
ZD Weia, SH Chanb, LL Lia, HF Caia, ZT Xiab and CX Sunc,
Electrodepositing Pt on a Nafion-
bonded carbon electrode as a catalyzed electrode for oxygen reduction reaction
,
Electrochimica Acta 50 (2005) 2279-2287.
42.
S Marcotte, D Villers, N Guillet, L Roué and JP Dodelet,
Electroreduction of oxygen on Co-
based catalysts: determination of the parameters affecting the two-electron transfer reaction
in an acid medium
, Electrochimica Acta 50 (2004) 179-188.
43.
S Durón, R Rivera-Noriega, P Nkeng, G Poillerat and O Solorza-Feria,
Kinetic study of oxygen
reduction on nanoparticles of ruthenium synthesized by pyrolysis of Ru
3
(CO)
12
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Electroanalytical Chem. 566 (2004) 281-289.
44.
DR Gabe and FC Walsh,
Enhanced Mass Transfer at the Rotating Cylinder Electrode
–
I.
Characterization of a Smooth Cylinder and Roughness Development in Solutions of Constant
Concentration
, J. Appl. Electrochem. 14 (1984) 555.
45.
DR Gabe and FC Walsh,
Enhanced Mass Transfer at the Rotating Cylinder Electrode
–
II.
Development of Roughness for Solutions of Decreasing Concentration
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14 (1984) 565.
46.
DR Gabe and FC Walsh,
Enhanced Mass Transfer at the Rotating Cylinder Electrode
–
III. Pilot
and Production Plant Experience
, J. Appl. Electrochem. 15 (1985) 807.
47.
DR Gabe and PA Makanjuola,
Enhanced Mass Transfer Using Roughened Rotating Cylinder
Electrodes in Turbulent Flow
, J. Appl. Electrochem. 17 (1987) 370.
48.
DR Gabe, GD Wilcox, J Gonzalez-Garcia and FC Walsh,
The Rotating Cylinder Electrode: Its
Continued Development and Application
, J. Appl. Electrochem. 28 (1998) 759.
49.
G Kear, BD Barker, K Stokes and FC Walsh,
Flow Influenced Electrochemical Corrosion of Nickel
Aluminum Bronze
–
Part I. Cathodic Polarization
, J. Appl. Electrochem. 34 (2004) 1235.
50.
G Kear, BD Barker, K Stokes and FC Walsh,
Flow Influenced Electrochemical Corrosion of Nickel
Aluminum Bronze
–
Part II. Anodic Polarization and Derivation of the Mixed Potential
, J. Appl.
Electrochem. 34 (2004) 1241.
51.
Q Lu, MM Stack and CR Wiseman,
AC Impedance Spectroscopy as a Technique for
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, J. Appl. Electrochem. 31 (2001)
1373.
52.
JM Maciel and SML Agostinho,
Use of a Rotating Cylinder Electrode in Corrosion Studies of a
90/10 Cu
–
Ni Alloy in
0.5M H
2
SO
4
Media
, J. Appl. Electrochem. 30 (2000) 981.
53.
JM Grau and JM Bisang,
Mass Transfer Studies at Rotating Cylinder Electrodes of Expanded
Metal
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54.
A Eklund and D Simonsson,
Enhanced Mass Transfer to a Rotating Cylinder Electrode with Axial
Flow
, J. Appl. Electrochem. 18 (1988) 710.
Summary of Contents for MSR 636A
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