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Measurement of the surface charge density of CO-saturated Pt(111) electrodes as a function of potential: the potential of zero charge of Pt(111)

https://doi.org/10.1016/j.susc.2004.08.014
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Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

7 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 26 checked references that resolve
resolves10.1007/978-1-4615-6684-7_5
Potentials of Zero Charge
resolves10.1016/0013-4686(75)90017-1
Potentials of zero total and zero free charge of platinum group metals
resolves10.1016/0022-0728(95)03927-9
Anion—surface interactions Part 3. N2O reduction as a chemical probe of the local potential of zero total charge
resolves10.1016/0022-0728(96)04576-7
Adsorption of water at Pt(111) electrode in HClO4 solutions. The potential of zero charge
resolves10.1021/jp020785q
Coulostatic Potential Transients Induced by Laser Heating of a Pt(111) Single-Crystal Electrode in Aqueous Acid Solutions. Rate of Hydrogen Adsorption and Potential of Maximum Entropy
resolves10.1016/0022-0728(96)01006-6
The pzc of Au(111) and Pt(111) in a perchloric acid solution: an ex situ approach to the immersion technique
resolves10.1016/S1388-2481(02)00362-4
The potentials of zero charge of Pd(111) and thin Pd overlayers on Au(111)
resolves10.1021/la9801054
Potentials of Zero Charge for Platinum(111)−Aqueous Interfaces:  A Combined Assessment from In-Situ and Ultrahigh-Vacuum Measurements
resolves10.1016/S0022-0728(03)00229-8
The effect of chloride on the electrooxidation of adsorbed CO on polycrystalline platinum electrodes
resolves10.1103/PhysRevLett.88.259601
Comment on “High Pressure Adsorbate Structures Studied by Scanning Tunneling Microscopy: CO on Pt(111) in Equilibrium with the Gas Phase”
resolves10.1016/S0022-0728(02)00669-1
Mechanism and kinetics of the electrochemical CO adlayer oxidation on Pt(111)
resolves10.1021/j100019a055
Infrared Spectroscopy of Model Electrochemical Interfaces in Ultrahigh Vacuum: Roles of Adsorbate and Cation Double-Layer Hydration in the Pt(111)-Carbon Monoxide Aqueous System
resolves10.1016/0013-4686(91)85023-Z
Structure of the metal/electrolyte solution interface: new data for theory
resolves10.1016/S0022-0728(03)00372-3
Determination of the Gibbs excess of H and OH adsorbed at a Pt(111) electrode surface using a thermodynamic method
resolves10.1021/jp020054q
Laser-Induced Potential Transients on a Au(111) Single-Crystal Electrode. Determination of the Potential of Maximum Entropy of Double-Layer Formation
resolves10.1016/0039-6028(90)90072-G
Coverage- and potential-dependent binding geometries of carbon monoxide at ordered low-index platinum- and rhodium-aqueous interfaces: comparisons with adsorption in corresponding metal-vacuum environments
resolves10.1016/0022-0728(86)87078-4
Infrared spectra of carbon monoxide adsorbed on a smooth gold electrode
resolves10.1021/jp960479a
Study by Fourier Transform Infrared Spectroscopy of the Electroadsorption of CO on the Ferrous Metals. 1. Iron
resolves10.1021/la970628w
Study by Fourier Transform Infrared Spectroscopy of the Adsorption of Carbon Monoxide on a Cobalt Electrode at pH 3−14
resolves10.1021/la9706274
Study by Fourier Transform Infrared Spectroscopy of the Adsorption of Carbon Monoxide on a Nickel Electrode at pH 3−14
resolves10.1016/S1388-2481(03)00046-8
On the origin of the double layer capacitance maximum of Pt(111) single crystal electrodes
resolves10.1016/S0013-4686(01)00597-7
Double layer capacitance of Pt(111) single crystal electrodes
resolves10.1016/0039-6028(95)00468-8
Model electrochemical interfaces in ultra-high vacuum: solvent-induced surface potential profiles on Pt(111) from work-function measurements and infrared Stark effects
resolves10.1016/0368-2048(90)85066-I
Investigation of surfaces by scanning photoemission microscopy
resolves10.1016/0022-0728(65)80049-3
The temperature-dependence of the surface potential of aqueous electrolytes
resolves10.1039/tf9706602464
Real standard entropy of ions in water
The 7 references without a DOI — listed, not checked
no DOI — not checkedS. Trasatti, in: H. Gerischer, C.W. Tobias (Eds.), Advances in Electrochemistry and Electrochemical Engineering, Vol. 10, Wiley, New York, 1977, p. 213
no DOI — not checked10.1016/j.susc.2004.08.014_bib4
no DOI — not checkedV. Climent, R. Gómez, J.M. Orts, A. Aldaz, J.M. Feliu, in: C. Korzeniewski, B.E. Conway (Eds.), Electrochemical Society Proceedings, Vol. 97-17, The Electrochemical Society, Pennington, NJ, 1997, p. 222
no DOI — not checkedA. López-Cudero, A. Cuesta, C. Gutiérrez, in preparation
no DOI — not checkedJ. Wang, K. Tamura, B. Ocko, R. Adzic, National Synchrotron Light Source, Beamline X22A, Activity Report 2002, Abstract No. Wang 0451 (http:slsweb.nsls.bnl.gov/nsls/pubs/actrpt/2002/Abstracts)
no DOI — not checkedF.T. Wagner, in: J. Lipkowski, P.N. Ross (Eds.), Structure of Electrified Interfaces, Frontiers in Electrochemistry, Vol. 2, VCH, New York, 1993, p. 310
no DOI — not checked10.1016/j.susc.2004.08.014_bib31
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