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Electrodes
Lead-acid, nickel-metal hydri...
Applied electrochemistry
Lithium-ion batteries
Electrodeposition and electro...
Thin layers, films, monolayer...
Computational modeling; simul...
Electrolytes
Electroanalytical chemistry
Electrochemical methods
Surface structure, reactivity...
Electrolysis
Electrochemistry and electrop...
Corrosion and passivation
Molten-carbonate fuel cells
Electrodeposition, electropla...
Phosphoric-acid fuel cells ; ...
Specific chemical reactions; ...
Surface and interface chemist...
Polymer-electrolyte fuel cells
1.
García B. L.; Sethuraman V. A.; Weidner J. W.; White R. E.; Dougal R.
Errata: “Mathematical Model of a Direct Methanol Fuel Cell” [J. Fuel Cell Sci. Tech. 1 (1), pp. 43–48 (2004)]
2.
Guo Meng; White Ralph E.
Thermal Model for Lithium Ion Battery Pack with Mixed Parallel and Series Configuration
3.
Guo Meng; Sikha Godfrey; White Ralph E.
Single-Particle Model for a Lithium-Ion Cell: Thermal Behavior
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4.
Rahimian Saeed Khaleghi; Rayman Sean C.; White Ralph E.
Maximizing the Life of a Lithium-Ion Cell by Optimization of Charging Rates
5.
Cai Long; White Ralph E.
An Efficient Electrochemical–Thermal Model for a Lithium-Ion Cell by Using the Proper Orthogonal Decomposition Method
6.
Renganathan Sindhuja; Sikha Godfrey; Santhanagopalan Shriram; White Ralph E.
Theoretical Analysis of Stresses in a Lithium Ion Cell
7.
Rayman Sean; White R. E.
Simulation of Reduction of Cr(VI) by Fe(II) Produced Electrochemically in a Parallel-Plate Electrochemical Reactor
8.
Reduction of Model Order Based on Proper Orthogonal Decomposition for Lithium-Ion Battery Simulations
9.
Sikha Godfrey; White Ralph E.
Analytical Expression for the Impedance Response for a Lithium-Ion Cell
10.
Dong Qingbo; Santhanagopalan Shriram; White Ralph E.
A Comparison of Numerical Solutions for the Fluid Motion Generated by a Rotating Disk Electrode
11.
Kumaresan Karthikeyan; Mikhaylik Yuriy; White Ralph E.
A Mathematical Model for a Lithium–Sulfur Cell
12.
Santhanagopalan Shriram; Zhang Qi; Kumaresan Karthikeyan; White Ralph E.
Parameter Estimation and Life Modeling of Lithium-Ion Cells
13.
Kumaresan Karthikeyan; Sikha Godfrey; White Ralph E.
Thermal Model for a Li-Ion Cell
14.
Dong Q.; Santhanagopalan S.; White R. E.
Simulation of the Oxygen Reduction Reaction at an RDE in 0.5 ;MH2SO4 Including an Adsorption Mechanism
15.
Simulation of Polarization Curves for Oxygen Reduction Reaction in 0.5 ;M ;H2SO4 at a Rotating Ring Disk Electrode
16.
Zhang Qi; White Ralph E.
Moving Boundary Model for the Discharge of a LiCoO2 Electrode
17.
Devan Sheba; White Ralph E.
Short-Time Transient Analysis of Intercalation of an Ion into a Sphere
18.
Santhanagopalan Shriram; Guo Qingzhi; White Ralph E.
Parameter Estimation and Model Discrimination for a Lithium-Ion Cell
19.
Analytical Expression for the Impedance Response of an Insertion Electrode Cell
20.
Sikha Godfrey; White Ralph E.; Popov Branko N.
Erratum: A Mathematical Model for a Lithium-Ion Battery/Electrochemical Capacitor Hybrid System [J. Electrochem. Soc., 152, A1682 (2005)]
21.
Zhang Qi; Guo Qingzhi; White Ralph E.
A New Kinetic Equation for Intercalation Electrodes
22.
A Mathematical Model for a Lithium-Ion Battery/Electrochemical Capacitor Hybrid System
23.
Devan Sheba; Subramanian Venkat R.; White Ralph E.
Transient Analysis of a Porous Electrode
24.
Guo Qingzhi; White Ralph E.
Cubic Spline Regression for the Open-Circuit Potential Curves of a Lithium-Ion Battery
25.
A Steady-State Impedance Model for a PEMFC Cathode [;J. Electrochem. Soc., 151, E133 (2004)]
26.
García Brenda L.; Sethuraman Vijay A.; Weidner John W.; White Ralph E.; Dougal Roger
Mathematical Model of a Direct Methanol Fuel Cell
27.
Subramanian Venkat R.; Tapriyal Deepak; White Ralph E.
A Boundary Condition for Porous Electrodes
28.
Santhanagopalan Shriram; White Ralph E.
Series Solution to the Transient Convective Diffusion Equation for a Rotating Disk Electrode
29.
Guo Qingzhi; Sethuraman Vijay A.; White Ralph E.
Parameter Estimates for a PEMFC Cathode
30.
Sikha Godfrey; Popov Branko N.; White Ralph E.
Effect of Porosity on the Capacity Fade of a Lithium-Ion Battery
31.
Devan Sheba; Subramanian Venkat R.; White R. E.
Analytical Solution for the Impedance of a Porous Electrode
32.
A Steady-State Impedance Model for a PEMFC Cathode
33.
Ploehn Harry J.; Ramadass Premanand; White Ralph E.
Solvent Diffusion Model for Aging of Lithium-Ion Battery Cells
34.
Guo Qingzhi; Cayetano Maria; De Castro Emory S.; Tsou Yu-min; White Ralph E.
Study of Ionic Conductivity Profiles of the Air Cathode of a PEMFC by AC Impedance Spectroscopy
35.
Subramanian N.; Haran B. S.; White R. E.; Popov B. N.
Full Cell Mathematical Model of a MCFC
36.
Gomadam Parthasarathy M.; White Ralph E.; Weidner John W.
Modeling Heat Conduction in Spiral Geometries
37.
Subramanian N.; Haran B. S.; Ganesan P.; White R. E.; Popov B. N.
Analysis of Molten Carbonate Fuel Cell Performance Using a Three-Phase Homogeneous Model
38.
Subramanian Venkat R.; White Ralph E.
Simulating Shape Changes during Electrodeposition
39.
Lin Changqing; White Ralph E.; Ploehn Harry J.
Modeling the Effects of Ion Association on Alternating Current Impedance of Solid Polymer Electrolytes
40.
Haug Andrew T.; White Ralph E.; Weidner John W.; Huang Wayne; Shi Steven; Rana Narender; Grunow Stephan; Stoner Timothy C.; Kaloyeros Alain E.
Using Sputter Deposition to Increase CO Tolerance in a Proton-Exchange Membrane Fuel Cell
41.
Haug Andrew T.; White Ralph E.; Weidner John W.; Huang Wayne
Development of a Novel CO Tolerant Proton Exchange Membrane Fuel Cell Anode
42.
Guo Qingzhi; Subramanian Venkat R.; Weidner John W.; White R. E.
Estimation of Diffusion Coefficient of Lithium in Carbon Using AC Impedance Technique
43.
Haug Andrew T.; Stoner Timothy; Weidner John W.; White Ralph E.; Shi Steven; Huang Wayne; Rana Narender
Increasing Proton Exchange Membrane Fuel Cell Catalyst Effectiveness Through Sputter Deposition
44.
Subramanian Venkat R.; Ritter James A.; White Ralph E.
Approximate Solutions for Galvanostatic Discharge of Spherical Particles I. Constant Diffusion Coefficient
45.
Wu B.; White R. E.
Modeling of a Nickel-Hydrogen Cell: Phase Reactions in the Nickel Active Material
46.
Ramani Manikandan; Haran Bala S.; White Ralph E.; Popov Branko N.
Synthesis and Characterization of Hydrous Ruthenium Oxide-Carbon Supercapacitors
47.
Botte Gerardine G.; White Ralph E.
Modeling Lithium Intercalation in a Porous Carbon Electrode
48.
Durairajan A.; White R. E.; Haran B. S.; Popov B. N.
Development of a New Electrodeposition Process for Plating of Zn‐Ni‐X (X = Cd, P) Alloys Permeation Characteristics of Zn‐Ni‐Cd Ternary Alloys
49.
Subramanian Venkat R.; Ploehn Harry J.; White Ralph E.
Shrinking Core Model for the Discharge of a Metal Hydride Electrode
50.
Yu P.; Ritter J. A.; White R. E.; Popov B. N.
Ni‐Composite Microencapsulated Graphite as the Negative Electrode in Lithium‐Ion Batteries II; Electrochemical Impedance and Self‐Discharge Studies
51.
Durairajan Anand; White Ralph E.; Haran Bala S.; Popov Branko N.
Development of a New Electrodeposition Process for Plating of Zn‐Ni‐X (X = Cd, P) Alloys; I. Corrosion Characteristics of Zn‐Ni‐Cd Ternary Alloys
52.
A Semianalytical Method for Predicting Primary and Secondary Current Density Distributions: Linear and Nonlinear Boundary Conditions
53.
Ni‐Composite Microencapsulated Graphite as the Negative Electrode in Lithium‐Ion Batteries I. Initial Irreversible Capacity Study
54.
Haug Andrew T.; White Ralph E.
Oxygen Diffusion Coefficient and Solubility in a New Proton Exchange Membrane
55.
Modeling the Effects of Ion Association on Direct‐Current Polarization of Solid Polymer Electrolytes
56.
Self‐Discharge Model of a Nickel‐Hydrogen Cell
57.
Zhang Dong; Popov Branko N.; White Ralph E.
Modeling Lithium Intercalation of a Single Spinel Particle under Potentiodynamic Control
58.
Arora Pankaj; Doyle Marc; White Ralph E.
Mathematical Modeling of the Lithium Deposition Overcharge Reaction in Lithium‐Ion Batteries Using Carbon‐Based Negative Electrodes
59.
Lin Chuan; Popov Branko N.; Ritter James A.; White Ralph E.
A Mathematical Model of an Electrochemical Capacitor with Double‐Layer and Faradaic Processes
60.
Botte Gerardine G.; Johnson Bradley A.; White Ralph E.
Influence of Some Design Variables on the Thermal Behavior of a Lithium‐Ion Cell
61.
See Dawn M.; White Ralph E.
A Simple Method for Determining Differential Diffusion Coefficients from Aqueous Electrolyte Diaphragm Cell Data at Temperatures Below 0°C
62.
Baxter S. F.; Battaglia V. S.; White R. E.
Methanol Fuel Cell Model: Anode
63.
Yu Ping; Popov B. N.; Ritter J. A.; White R. E.
Determination of the Lithium Ion Diffusion Coefficient in Graphite
64.
Ramasubramanian M.; Popov B. N.; White R. E.; Chen K. S.
A Mathematical Model for Electroless Copper Deposition on Planar Substrates
65.
Haran Bala S.; Popov Branko N.; White Ralph E.
Theoretical Analysis of Metal Hydride Electrodes
66.
Arora Pankaj; Zhang Dong; Popov Branko N.; White Ralph E.
Chromium Oxides and Lithiated Chromium Oxides. Promising Cathode Materials for Secondary Lithium Batteries
67.
Vidts P. De; Kosanovich K.; See D.; Wu B.; Delgado J.; White R. E.
A Nonisothermal Nickel‐Hydrogen Cell Model
68.
Arora Pankaj; White Ralph E.; Doyle Marc
Capacity Fade Mechanisms and Side Reactions in Lithium‐Ion Batteries
69.
Studies on Electroless Cobalt Coatings for Microencapsulation of Hydrogen Storage Alloys
70.
Ramasubramanian M.; Popov B. N.; White R. E.
Characterization of Hydrogen Permeation Through Zinc‐Nickel Alloys under Corroding Conditions
71.
Heikonen Jussi M.; Ploehn Harry J.; White Ralph E.
The Effect of Particle Size on the Discharge Performance of a Nickel‐Metal Hydride Cell
72.
Arora P.; Popov B. N.; White R. E.
Electrochemical Investigations of Cobalt‐Doped ;LiMn2O4 as Cathode Material for Lithium‐Ion Batteries
73.
Hristova E.; Arsov Lj.; Popov B. N.; White R. E.
Ellipsometric and Raman Spectroscopic Study of Thermally Formed Films on Titanium
74.
Duarte H. A.; See D. M.; Popov B. N.; White R. E.
The Effects of Organic Compounds on Inhibition of Hydrogen Permeation Through a Mild Steel Membrane
75.
Thirumalai Dhanwa; White Ralph E.
Mathematical Modeling of Proton‐Exchange‐Membrane Fuel‐Cell Stacks
76.
De Vidts Pauline; White Ralph E.
Governing Equations for Transport in Porous Electrodes
77.
De Vidts Pauline; Delgado Javier; White Ralph E.
A Multiphase Mathematical Model of a Nickel/Hydrogen Cell
78.
Kalu E. E.; White R. E.; Hobbs D. T.
Use of a Hydrogen Anode for Nitrate Waste Destruction
79.
Ramasubramanian M.; Popova S. N.; Popov B. N.; White R. E.; Yin K.-M.
Anomalous Codeposition of Fe‐Ni Alloys and ;Fe‐;Ni‐;SiO2 Composites under Potentiostatic Conditions
80.
Coleman D. H.; Zheng G.; Popov B. N.; White R. E.
The Effects of Multiple Electroplated Zinc Layers on the Inhibition of Hydrogen Permeation Through an Iron Membrane
81.
Coleman D. H.; White R. E.
Linear Algebra Used to Determine Independent Half‐Cell Equations
82.
Pakalapati S. N. R.; Popov B. N.; White R. E.
Anodic Oxidation of Ethylenediaminetetraacetic Acid on Platinum Electrode in Alkaline Medium
83.
Zheng G.; Popov B. N.; White R. E.
Determination of Transport and Electrochemical Kinetic Parameters of Bare and Copper‐Coated ;LaNi4.27Sn0.24 Electrodes in Alkaline Solution
84.
Application of Porous Electrode Theory on Metal Hydride Electrodes in Alkaline Solution
85.
Mathematical Modeling for the Discharge of a Metal Hydride Electrode
86.
Electrochemical Determination of the Diffusion Coefficient of Hydrogen Through an LaNi4.25Al0.75 Electrode in Alkaline Aqueous Solution
87.
Mathematical Modeling of a Nickel‐Cadmium Cell; Proton Diffusion in the Nickel Electrode
88.
Coleman D. H.; White R. E.; Hobbs D. T.
A Parallel‐Plate Electrochemical Reactor Model for the Destruction of Nitrate and Nitrite in Alkaline Waste Solutions
89.
Mathematical modeling of a nickel/metal‐hydride cell
90.
Hydrogen‐Atom Direct‐Entry Mechanism into Metal Membranes
91.
The Role of Thallium as a Hydrogen Entry Promoter on Cathodically Polarized HY‐130 Steel
92.
Use of Underpotential Deposition of Zinc to Mitigate Hydrogen Absorption into Monel K500
93.
Kim Junbom; Nguyen T. V.; White R. E.
Thermal Characteristics of a Nickel‐Hydrogen Battery
94.
Mao Z.; De Vidts P.; White R. E.; Newman John
Theoretical Analysis of the Discharge Performance of a NiOOH/;H2 Cell
95.
Mao Z.; White R. E.
A Finite‐Difference Method for Pseudo‐Two‐Dimensional Boundary Value Problems
96.
Surface Treatment for Mitigation of Hydrogen Absorption and Penetration into AISI 4340 Steel
97.
Popov B. N.; Zhang W.; Darcy E. C.; White R. E.
Impedance Spectroscopy as a Nondestructive Health Interrogation Tool for Lithium‐BCX Cells
98.
Nguyen Trung V.; White Ralph E.
A Water and Heat Management Model for Proton‐Exchange‐Membrane Fuel Cells
99.
Dave Bhasker B.; White Ralph E.; Srinivasan Supramaniam; Appleby A. John
Impedance Analysis for Oxygen Reduction in a Lithium Carbonate Melt: Effects of Partial Pressure of Carbon Dioxide and Temperature
100.
Popov B. N.; Yin Ken-Ming; White R. E.
Galvanostatic Pulse and Pulse Reverse Plating of Nickel‐Iron Alloys from Electrolytes Containing Organic Compounds on a Rotating Disk Electrode
101.
Yan J. -F.; White R. E.; Griffin R. B.
Parametric Studies of the Formation of Calcareous Deposits on Cathodically Protected Steel in Seawater
102.
Popov B. N.; Alwohaibi Mohammed A.; White R. E.
Using Electrochemical Impedance Spectroscopy as a Tool for Organic Coating Solute Saturation Monitoring
103.
Yan J. -F.; Nguyen T. V.; White R. E.; Griffin R. B.
Mathematical Modeling of the Formation of Calcareous Deposits on Cathodically Protected Steel in Seawater
104.
Kalu E. E.; White R. E.
Thermal Analysis of Spirally Wound Li/BCX and Li/;SOCl2 Cells
105.
Kim Junbom; White R. E.
Comparison of Heat‐Fin Materials and Design of a Common‐Pressure‐Vessel Nickel‐Hydrogen Battery
106.
Kawanami Makoto; Nguyen Trung V.; White Ralph E.
A Mathematical Model of a CuO/;Cu Vaporvolt Cell
107.
Thermal Mathematical Modeling of a Multicell Common Pressure Vessel Nickel‐Hydrogen Battery
108.
Kalu E. E.; White R. E.; Darcy E. C.
Calorimetric Determination of the Thermoneutral Potential of Li/BCX and Li/;SOCl2 Cells
109.
Measurements of the Fundamental Thermodynamic Parameters of Li/BCX and Li/;SOCl2 Cells
110.
Yan J. -F.; Pakalapati S. N. R.; Nguyen T. V.; White R. E.; Griffin R. B.
Mathematical Modeling of Cathodic Protection Using the Boundary Element Method with a Nonlinear Polarization Curve
111.
Tsou Yu-Min; Kimble M. C.; White R. E.
Hydrogen Diffusion, Solubility, and Water Uptake in Dow's Short‐Side‐Chain Perfluorocarbon Membranes
112.
McCluney S. A.; Popova S. N.; Popov B. N.; White R. E.; Griffin R. B.
Comparing Electrochemical Impedance Spectroscopy Methods for Estimating the Degree of Delamination of Organic Coatings on Steel
113.
The Self‐Discharge of the ;NiOOH/;Ni(;OH);2 Electrode Constant Potential Study
114.
Mathematical Modeling of a Primary Zinc/Air Battery
115.
Kimble Michael C.; White Ralph E.
Parameter Sensitivity and Optimization Predictions of a Hydrogen/Oxygen Alkaline Fuel Cell Model
116.
Popov B. N.; White R. E.; Slavkov D.; Koneska Z.
Reduction of Chromium (VI) when Solar Selective Black Chromium is Deposited in the Presence of Organic Additive
117.
In Situ Degradation of Polyhalogenated Aromatic Hydrocarbons by Electrochemically Generated Superoxide Ions
118.
A Mathematical Model of a Hydrogen/Oxygen Alkaline Fuel Cell
119.
A Mathematical Model of the Self‐Discharge of a ;Ni‐;H2 Battery
120.
Fan Deyuan; White Ralph E.
Mathematical Modeling of a Nickel‐Cadmium Battery
121.
Yeu Taewhan; Carbajal Jose; Yin Ken-Ming; White Ralph E.
Electrochemical Characterization of Electronically Conductive Polypyrrole on Cyclic Voltammograms
122.
Davé Bhasker B.; White Ralph E.; Srinivasan Supramaniam; Appleby A. John
Impedance Analysis for Oxygen Reduction in a Lithium Carbonate Melt
123.
Fan D.; White R. E.
Modification of Newman's BAND(J) Subroutine to Multi‐Region Systems Containing Interior Boundaries; MBAND
124.
Mao Z.; White R. E.; Jay B.
Current Distribution in a HORIZON® Lead‐Acid Battery during Discharge
125.
Mao Z.; Anani A.; White R. E.; Srinivasan S.; Appleby A. J.
A Modified Electrochemical Process for the Decomposition of Hydrogen Sulfide in an Aqueous Alkaline Solution
126.
Yin Ken-Ming; Yeu Taewhan; White Ralph E.
A Mathematical Model of Electrochemical Reactions Coupled with Homogeneous Chemical Reactions
127.
Davé Bhasker B.; White Ralph E.; Srinivasan Supramanian; Appleby A. John
Electrode Kinetics of Oxygen Reduction in Lithium Carbonate Melt: Use of Impedance Analysis and Cyclic Voltammetric Techniques to Determine the Effects of Partial Pressure of Oxygen
128.
A Mathematical Model of a Sealed Nickel‐Cadmium Battery
129.
Nguyen T. V.; White R. E.; Gu Hiram
The Effects of Separator Design on the Discharge Performance of a Starved Lead‐Acid Cell
130.
Anani A. A.; Mao Z.; White R. E.; Srinivasan S.; Appleby A. J.
Electrochemical Production of Hydrogen and Sulfur by Low‐Temperature Decomposition of Hydrogen Sulfide in an Aqueous Alkaline Solution
131.
Kimble Michael C.; White Ralph E.; Tsou Yu-Min; Beaver R. Neal
Estimation of the Diffusion Coefficient and Solubility for a Gas Diffusing Through a Membrane
132.
Mao Z.; White R. E.; Dandapani B.; Anani A.; Srinivasan S.; Appleby A. J.
Electrochemical Behavior of Graphite and Ni‐Cr Electrodes in Sodium Polysulfide in the Absence and Presence of Hydrogen Sulfide
133.
Mao Z.; Adanuvor P.; White R. E.
Mathematical Modeling of an H2S Removal Electrolyzer
134.
Adanuvor P. K.; White R. E.; Appleby A. J.
A Computer Simulation of the Oxygen Reduction Reaction in Carbonate Melts
135.
Jagush F. A.; White R. E.; Ryan William E.
Predicted Secondary Current Distributions for Linear Kinetics in a Modified Three‐Dimensional Hull Cell
136.
White R. E.; Jagush F.; Burney H. S.
Three‐Dimensional Current Distributions in a Bipolar, Chlor‐Alkali Membrane Cell
137.
Simpson G. D.; White R. E.
A Simple Model for a Zinc/Bromine Flow Cell and Associated Storage Tanks
138.
Yeu Taewhan; White Ralph E.
Mathematical Model of a Lithium/Polypyrrole Cell
139.
Curtis D. A.; Evans T. I.; White R. E.
A Comparison of Newman's Numerical Technique and deBoor's Algorithm
140.
Evans T. I.; White R. E.
Estimation of Electrode Kinetic Parameters of the Lithium/Thionyl Chloride Cell Using a Mathematical Model
141.
A Thermal Analysis of a Spirally Wound Battery Using a Simple Mathematical Model
142.
An Algebraic Model for a Zinc/Bromine Flow Cell
143.
Ridge S. J.; White R. E.; Tsou Y.; Beaver R. N.; Eisman G. A.
Oxygen Reduction in a Proton Exchange Membrane Test Cell
144.
Evans T. I.; Nguyen T. V.; White R. E.
A Mathematical Model of a Lithium/Thionyl Chloride Primary Cell
145.
Ying Ramona Y.; Ng Patrick K.; Mao Z.; White Ralph E.
Electrodeposition of Copper‐Nickel Alloys from Citrate Solutions on a Rotating Disk Electrode
146.
Carbajal Jose L.; White Ralph E.
Electrochemical Production and Corrosion Testing of Amorphous Ni‐P
147.
Adanuvor Prosper K.; White Ralph E.
Oxygen Reduction on Silver in 6.5M Caustic Soda Solution
148.
Chen Shiuan; Yin Ken-Ming; White Ralph E.
A Mathematical Model for the Electrodeposition of Alloys on a Rotating Disk Electrode
149.
Yeu Taewhan; Nguyen Trung V.; White Ralph E.
A Mathematical Model for Predicting Cyclic Voltammograms of Electronically Conductive Polypyrrole
150.
Analysis of Electrokinetic Data by Parameter Estimation and Model Discrimination Technqiues
151.
Burney H. S.; White R. E.
Predicting Shunt Currents in Stacks of Bipolar Plate Cells with Conducting Manifolds
152.
Dimpault-Darcy E. C.; White R. E.
Secondary Current Distributions Using TOPAZ2D and Linear Kinetics
153.
Dimpault-Darcy E. C.; Nguyen T. V.; White R. E.
A Two‐Dimensional Mathematical Model of a Porous Lead Dioxide Electrode in a Lead‐Acid Cell
154.
Gu Hiram; Nguyen T. V.; White R. E.
A Mathematical Model of a Lead‐Acid Cell
155.
A Review of Mathematical Modeling of the Zinc/Bromine Flow Cell and Battery
156.
Walton Clifford W.; White Ralph E.
Utility of an Empirical Method of Modeling Combined Zero Gap/Attached Electrode Membrane Chlor‐Alkali Cells
157.
Ryan William E.; White R. E.; Kelly S. L.
A Mathematical Model for the Initial Corrosion Rate of a Porous Layer on a Rotating Disk Electrode
158.
Adanuvor P. K.; White R. E.; Lorimer S. E.
The Effect of the Tribromide Complex Reaction on the Oxidation/Reduction Current of the Br2/;Br-; Electrode
159.
Adanuvor P. K.; White R. E.
Simulation of the Polarization Curves for Oxygen Reduction at a Rotating Disk Electrode
160.
A Mathematical Model of a Zinc/Bromine Flow Cell
161.
Modeling the Rotating Disk Electrode for Studying the Kinetics of Electrochemical Reactions
162.
Mader M. J.; White R. E.
A Mathematical Model of a Zn/;Br2 Cell on Charge
163.
Nguyen T. V.; Walton C. W.; White R. E.
A Mathematical Model for a Parallel Plate Electrochemical Reactor, CSTR, and Associated Recirculation System
164.
Mader M. J.; Walton C. W.; White R. E.
Parallel Plate Electrochemical Reactor Model: Material Balance Closure and a Simplification
165.
Van Zee John; White R. E.
Simple Models for Diaphragm‐Type Chlorine/Caustic Cells
166.
Van Zee John; White R. E.; Watson A. T.
167.
White R. E.; Walton C. W.; Burney H. S.; Beaver R. N.
Predicting Shunt Currents in Stacks of Bipolar Plate Cells
168.
Nguyen T. V.; Walton C. W.; White R. E.; Van Zee J.
Parallel‐Plate Electrochemical Reactor Model
169.
Using Parameter Estimation Techniques with a Simple Model of a Diaphragm‐Type Electrolyzer to Predict the Electrical Energy Cost for ;NaOH Production
170.
White R. E.; Nicholson M. A.; Van Zee J.; Kleine L. G.; Darby R.
Extension of Darby's Model of a Hydrophylic Gas Fed Porous Electrode
171.
Van Zee John; White Ralph E.
An Analysis of a Back Fed Porous Electrode for the Br2/;Br-; Redox Reaction
172.
White R. E.; Lorimer S. E.; Darby R.
Prediction of the Current Density at an Electrode at Which Multiple Electrode Reactions Occur under Potentiostatic Control
173.
White R. E.; Lorimer S. E.
A Model of the Bromine/Bromide Electrode Reaction at a Rotating Disk Electrode
174.
White R. E.; Bain Mike; Raible Mike
Parallel Plate Electrochemical Reactor Model
36
Popov, Branko N.
8
Sikha, Godfrey
Subramanian, Venkat R.
Guo, Qingzhi
7
Santhanagopalan, Shriram
Weidner, John W.
Haran, Bala
5
Ploehn, Harry J.
Ritter, James A.
4
Haug, Andrew T.
3
Devan, Sheba
Dong, Qingbo
Kumaresan, Karthikeyan
Huang, Wayne
Sethuraman, Vijay A.