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Title
Dissolution Mechanism of Platinum in Sulfuric Acid Solution
Authors
Keywords
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Journal
JOURNAL OF THE ELECTROCHEMICAL SOCIETY
Volume 159, Issue 11, Pages F779-F786
Publisher
The Electrochemical Society
Online
2012-09-20
DOI
10.1149/2.017212jes
References
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Related references
Note: Only part of the references are listed.- Thermodynamics and Hysteresis of Oxide Formation and Removal on Platinum (111) Surfaces
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- First Principles Calculations on Site-Dependent Dissolution Potentials of Supported and Unsupported Pt Particles
- (2010) Ryosuke Jinnouchi et al. Journal of Physical Chemistry C
- In situ STM observation of morphological changes of the Pt(111) electrode surface during potential cycling in 10 mM HF solution
- (2010) Mitsuru Wakisaka et al. PHYSICAL CHEMISTRY CHEMICAL PHYSICS
- Pt nanoparticle stability in PEM fuel cells: influence of particle size distribution and crossover hydrogen
- (2009) Edward F. Holby et al. Energy & Environmental Science
- Pt Degradation Mechanism in Concentrated Sulfuric Acid Studied Using Rotating Ring−Disk Electrode and Electrochemical Quartz Crystal Microbalance
- (2009) Minoru Umeda et al. Journal of Physical Chemistry C
- In Situ and Real-Time Monitoring of Oxide Growth in a Few Monolayers at Surfaces of Platinum Nanoparticles in Aqueous Media
- (2009) Hideto Imai et al. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
- Electrochemical Stability of Nanometer-Scale Pt Particles in Acidic Environments
- (2009) Lei Tang et al. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
- Channel-Flow Double-Electrode Study on the Dissolution and Deposition Potentials of Platinum under Potential Cycles
- (2009) A. P. Yadav et al. JOURNAL OF THE ELECTROCHEMICAL SOCIETY
- Density functional theory study of the initial oxidation of the Pt(111) surface
- (2009) Jeffery M. Hawkins et al. PHYSICAL REVIEW B
- Cathode Platinum Degradation in Membrane Electrode Assembly Studied Using a Solid-State Electrochemical Cell
- (2008) Minoru Umeda et al. Journal of Physical Chemistry C
- STM study of high-coverage structures of atomic oxygen on Pt(111): p(2×1) and Pt oxide chain structures
- (2008) Sunil P. Devarajan et al. SURFACE SCIENCE
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