nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
Calculating Electrochemical Activity of Regular-Structure Porous Electrodes with an Immobilized Enzyme
|
Yu. G. Chirkov |
|
2004 |
40 |
1 |
p. 27-35 9 p. |
artikel |
2 |
Calculating Electrochemical Activity of Regular-Structure Porous Electrodes with an Immobilized Enzyme
|
Chirkov, Yu. G. |
|
2004 |
40 |
1 |
p. 27-35 |
artikel |
3 |
Combined Method for Reducing Irreversible Capacity of the Negative Graphite Electrode in Lithium-Ion Battery
|
T. L. Kulova |
|
2004 |
40 |
1 |
p. 16-21 6 p. |
artikel |
4 |
Combined Method for Reducing Irreversible Capacity of the Negative Graphite Electrode in Lithium-Ion Battery
|
Kulova, T. L. |
|
2004 |
40 |
1 |
p. 16-21 |
artikel |
5 |
DiffusionMigration Currents on Microelectrodes in the Absence of Supporting Electrolyte at an Arbitrary Charge of Ions
|
Z. A. Rotenberg |
|
2004 |
40 |
1 |
p. 50-55 6 p. |
artikel |
6 |
Diffusion–Migration Currents on Microelectrodes in the Absence of Supporting Electrolyte at an Arbitrary Charge of Ions
|
Rotenberg, Z. A. |
|
2004 |
40 |
1 |
p. 50-55 |
artikel |
7 |
Effect of Active-Material Grain Distribution by Size on Discharge of the Positive Electrode of LeadAcid Battery
|
M. G. Semenenko |
|
2004 |
40 |
1 |
p. 22-26 5 p. |
artikel |
8 |
Effect of Active-Material Grain Distribution by Size on Discharge of the Positive Electrode of Lead–Acid Battery
|
Semenenko, M. G. |
|
2004 |
40 |
1 |
p. 22-26 |
artikel |
9 |
Electrical Double Layer on Liquid BiGa Alloys in Aqueous Solutions
|
V. V. Emets |
|
2004 |
40 |
1 |
p. 56-62 7 p. |
artikel |
10 |
Electrical Double Layer on Liquid Bi–Ga Alloys in Aqueous Solutions
|
Emets, V. V. |
|
2004 |
40 |
1 |
p. 56-62 |
artikel |
11 |
Electrochemical Properties of Poly-o-Phenylenediamine Films in Solutions with Variable Concentration of Hydronium Ions
|
O. V. Levin |
|
2004 |
40 |
1 |
p. 91-98 8 p. |
artikel |
12 |
Electrochemical Properties of Poly-o-Phenylenediamine Films in Solutions with Variable Concentration of Hydronium Ions
|
Levin, O. V. |
|
2004 |
40 |
1 |
p. 91-98 |
artikel |
13 |
Electrolytic Nickel Oxides in the Electrodes of Lithium Secondary Batteries
|
E. M. Shembel' |
|
2004 |
40 |
1 |
p. 36-43 8 p. |
artikel |
14 |
Electrolytic Nickel Oxides in the Electrodes of Lithium Secondary Batteries
|
Shembel', E. M. |
|
2004 |
40 |
1 |
p. 36-43 |
artikel |
15 |
Impedance and Photoadmittance of Passive Iron Electrodes in Different Solutions
|
A. L. Klyuev |
|
2004 |
40 |
1 |
p. 86-90 5 p. |
artikel |
16 |
Impedance and Photoadmittance of Passive Iron Electrodes in Different Solutions
|
Klyuev, A. L. |
|
2004 |
40 |
1 |
p. 86-90 |
artikel |
17 |
Lithium Incorporation into Titanium Dioxide Films from a Propylene Carbonate Solution: A Photoelectrochemical Study
|
A. V. Churikov |
|
2004 |
40 |
1 |
p. 105-108 4 p. |
artikel |
18 |
Lithium Incorporation into Titanium Dioxide Films from a Propylene Carbonate Solution: A Photoelectrochemical Study
|
Churikov, A. V. |
|
2004 |
40 |
1 |
p. 105-108 |
artikel |
19 |
Lithium Intercalation into Titanium Dioxide Films from a Propylene Carbonate Solution
|
A. V. Churikov |
|
2004 |
40 |
1 |
p. 63-68 6 p. |
artikel |
20 |
Lithium Intercalation into Titanium Dioxide Films from a Propylene Carbonate Solution
|
Churikov, A. V. |
|
2004 |
40 |
1 |
p. 63-68 |
artikel |
21 |
Modeling the Discharge Process in the Grainy Layer of Active Material at the Negative Electrode of LeadAcid Battery
|
M. G. Semenenko |
|
2004 |
40 |
1 |
p. 98-101 4 p. |
artikel |
22 |
Modeling the Discharge Process in the Grainy Layer of Active Material at the Negative Electrode of Lead–Acid Battery
|
Semenenko, M. G. |
|
2004 |
40 |
1 |
p. 98-101 |
artikel |
23 |
Multistage Electrochemical Reactions with the Transfer of Intermediates between Near-Electrode Layer and Bulk Solution: Analysis of a Kinetic Model and Computer-Aided Modeling
|
F. I. Danilov |
|
2004 |
40 |
1 |
p. 1-9 9 p. |
artikel |
24 |
Multistage Electrochemical Reactions with the Transfer of Intermediates between Near-Electrode Layer and Bulk Solution: Analysis of a Kinetic Model and Computer-Aided Modeling
|
Danilov, F. I. |
|
2004 |
40 |
1 |
p. 1-9 |
artikel |
25 |
Number of Nuclei Formed during Electrocrystallization and Overall Time Dependence of Their Growth Current
|
Yu. D. Gamburg |
|
2004 |
40 |
1 |
p. 78-85 8 p. |
artikel |
26 |
Number of Nuclei Formed during Electrocrystallization and Overall Time Dependence of Their Growth Current
|
Gamburg, Yu. D. |
|
2004 |
40 |
1 |
p. 78-85 |
artikel |
27 |
Positron Annihilation in Copper Hydrogen-Charged Electrochemically
|
I. I. Bardyshev |
|
2004 |
40 |
1 |
p. 9-15 7 p. |
artikel |
28 |
Positron Annihilation in Copper Hydrogen-Charged Electrochemically
|
Bardyshev, I. I. |
|
2004 |
40 |
1 |
p. 9-15 |
artikel |
29 |
Pyrite Oxidation Mechanism in Aqueous Solutions: An in situ FTIR Study
|
I. V. Chernyshova |
|
2004 |
40 |
1 |
p. 69-77 9 p. |
artikel |
30 |
Pyrite Oxidation Mechanism in Aqueous Solutions: An in situ FTIR Study
|
Chernyshova, I. V. |
|
2004 |
40 |
1 |
p. 69-77 |
artikel |
31 |
Superionic Character of High-Temperature Conduction in Lanthanum Fluoride
|
B. M. Voronin |
|
2004 |
40 |
1 |
p. 44-49 6 p. |
artikel |
32 |
Superionic Character of High-Temperature Conduction in Lanthanum Fluoride
|
Voronin, B. M. |
|
2004 |
40 |
1 |
p. 44-49 |
artikel |
33 |
Work Function of SodiumRubidium Alloys
|
A. B. Alchagirov |
|
2004 |
40 |
1 |
p. 102-104 3 p. |
artikel |
34 |
Work Function of Sodium–Rubidium Alloys
|
Alchagirov, A. B. |
|
2004 |
40 |
1 |
p. 102-104 |
artikel |