1 - 15 |
To Honor Buck,Richard,P. Lindner E |
17 - 29 |
Power-Law Exponents and Hidden Bulk Relation in the Impedance Spectroscopy of Solids Macdonald JR |
31 - 37 |
The Richtmyer Modification of the Fully Implicit Finite-Difference Algorithm for Simulations of Electrochemical Problems Mocak J, Feldberg SW |
39 - 49 |
Model Dependence and Reliability of the Electrochemical Quantities Derived from the Measured Impedance Spectra of Polymer-Modified Electrodes Inzelt G, Lang G |
51 - 62 |
Critical Issues Associated with Interpretation of Impedance Spectra Orazem ME, Agarwal P, Garciarubio LH |
63 - 76 |
Impedance Characterization of Thin Electrochemically Formed Palladium Oxide-Films Zhang AJ, Birss VI, Vanysek P |
77 - 83 |
Impedance Measurements on Single-Crystals of the Oxygen-Ion Conductor Bicuvox Kurek P, Dygas JR, Breiter MW |
85 - 92 |
Lithium Insertion in WO3 Studied by Simultaneous Measurements of Impedance, Electrogravimetric and Electrooptical Transfer-Functions Gabrielli C, Keddam M, Perrot H, Torresi R |
93 - 102 |
A Numerical AC-Impedance Model Used for the Analysis of a Polyvinylferrocene Coated Electrode Deiss E, Sullivan M, Haas O |
103 - 110 |
Electroreflectance Study of Redox Reactions of Methylene-Blue Incorporated into Polypyrrole Coated on a Pyrolytic-Graphite Electrode Imabayashi SI, Nakamura T, Sagara T, Niki K |
111 - 116 |
A New Method for Determining Transport Numbers of Charged Membranes from Convective Diffusion Experiments Kontturi K, Mafe S, Manzanares JA, Pellicer J |
117 - 124 |
Discreteness-of-Charge Effects at an Electrode Covered with a Self-Assembled Monolayer Containing a Simple Redox Couple Fawcett WR |
125 - 130 |
Crystal-Face Specificity of Fluoride Adsorption on Ag Electrodes - The (311) Face Veggini F, Trasatti S, Doubova L |
131 - 142 |
Adsorption Characteristics by a Radiochemical Method on Smooth Electrode Surfaces Sung YE, Thomas A, Gamboaaldeco M, Franaszczuk K, Wieckowski A |
143 - 148 |
Investigation of the Electrodeposition and Behavior of Re Layers by Coupled Radiochemical and Electrochemical Methods Horanyi G, Bakos I |
149 - 158 |
Water and Electrolyte Structure at Ag Electrodes in Nonaqueous Butanol Solutions Using Surface-Enhanced Raman-Scattering Pemberton JE, Joa SL |
159 - 164 |
The Role of Water and Temperature in the Electrochemical-Behavior of Solid Iron(III) Hexacyanoferrate(II/III) Piela P, Wrona PK, Galus Z |
165 - 175 |
A Hollow-Fiber Supported Liquid Membrane System for Metal Speciation and Preconcentration - Calculation of the Response-Time Keller OC, Poitry S, Buffle J |
177 - 183 |
Organic Membranes for Miniaturized Electrochemical Sensors - Fabrication of a Combined Po2, PCO2 and pH Sensor Arquint P, Koudelkahep M, Derooij NF, Buhler H, Morf WE |
185 - 200 |
The Design of Durable Na+-Selective CHEMFETS Based on Polysiloxane Membranes Brunink JA, Lugtenberg RJ, Brzozka Z, Engbersen JF, Reinhoudt DN |
201 - 204 |
Chalcogenide Glass Chemical Sensors - Relationship Between Ionic Response, Surface Ion-Exchange and Bulk Membrane-Transport Vlasov YG, Bychkov EA |
205 - 213 |
Nonstoichiometric Dissolution of Lanthanum Fluoride (LaF3) and Its Relevance to a Process of Ion-Selective Charge Separation at the Solid-Solution Interface Tani Y, Umezawa Y, Chikama K, Hemmi A, Soma M |
215 - 220 |
Theory of Transient Potential Response of Ion-Selective Electrodes Based on Polarizable Liquid-Liquid Interface Senda M |