3607 - 3609 |
Trends in corrosion research Kalman E |
3611 - 3617 |
A new experimental approach to the time-constants of electrochemical impedance: frequency response of the double layer capacitance Antano-Lopez R, Keddam M, Takenouti H |
3619 - 3625 |
The evaluation of experimental dielectric data of barrier coatings by means of different models Schiller CA, Strunz W |
3627 - 3640 |
Contact electric impedance and resistance studies of the conduction mechanism in passive films on ferrous alloys Betova I, Bojinov M, Englund A, Fabricius G, Laitinen T, Makela K, Saario T, Sundholm G |
3641 - 3650 |
New knowledge on localized corrosion obtained from local measuring techniques de Wit JHW |
3651 - 3664 |
Electrochemical noise analysis (ENA) for active and passive systems in chloride media Mansfeld F, Sun Z, Hsu CH |
3665 - 3674 |
Measures for the detection of localized corrosion with electrochemical noise Cottis RA, Al-Awadhi MAA, Al-Mazeedi H, Turgoose S |
3675 - 3683 |
Detecting electrochemical transients generated by erosion-corrosion Burstein GT, Sasaki K |
3685 - 3698 |
Application of a submerged impinging jet for corrosion studies: development of models for the impedance response Orazem ME, Cardoso JC, Tribollet B |
3699 - 3703 |
Testing and analyzing metastable pitting corrosion Kriston A, Lakatos-Varsanyi M |
3705 - 3713 |
A novel approach to characterizing localized corrosion within a crevice Klassen RD, Roberge PR, Hyatt CV |
3715 - 3724 |
The use of electrochemical techniques to study the corrosion behaviour of organic coatings on steel pretreated with sol-gel zirconia films Fedrizzi L, Rodriguez FJ, Rossi S, Deflorian F, Di Maggio R |
3725 - 3733 |
In-situ atomic-scale studies of the mechanisms and dynamics of metal dissolution by high-speed STM Magnussen OM, Zitzler L, Gleich B, Vogt MR, Behm RJ |
3735 - 3742 |
Electrochemical atomic force microscopic studies on passive films of nitrogen-bearing austenitic stainless steels Mudali UK, Katada Y |
3743 - 3754 |
Study of the initial stage of white rust formation on zinc single crystal by EIS, STM/AFM and SEM/EDS techniques Sziraki L, Szocs E, Pilbath Z, Papp K, Kalman E |
3755 - 3766 |
Initial and later stages of anodic oxide formation on Cu, chemical aspects, structure and electronic properties Strehblow HH, Maurice V, Marcus P |
3767 - 3776 |
Influence of the temperature of film formation on the electronic structure of oxide films formed on 304 stainless steel Ferreira MGS, Hakiki NE, Goodlet G, Faty S, Simoes AMP, Belo MD |
3777 - 3781 |
Breakdown of valve metal passivity induced by aggressive anions Davydov AD |
3783 - 3790 |
Corrosion behaviour of stainless steel surfaces formed upon chemical decontamination Varga K, Baradlai P, Hirschberg G, Nemeth Z, Oravetz D, Schunk J, Tilky P |
3791 - 3799 |
Influence of cations on the corrosion inhibition efficiency of aminophosphonic acid Telegdi J, Shaglouf MM, Shaban A, Karman FH, Betroti I, Mohai M, Kalman E |
3801 - 3815 |
Studies of copper corrosion inhibition using electrochemical quartz crystal nanobalance and quartz crystal immittance techniques Hepel M, Cateforis E |
3817 - 3826 |
New interpretation of electrochemical data obtained from organic barrier coatings Vogelsang J, Strunz W |
3827 - 3834 |
Improvement of the electrochemical behaviour of AlN films produced by reactive sputtering using various under-layers Vacandio F, Massiani Y, Gravier P, Rossi S, Bonora PL, Fedrizzi L |
3835 - 3840 |
EQCM studies of the electrodeposition and corrosion of tin-zinc coatings Wang K, Pickering HW, Weil KG |
3841 - 3849 |
Role of redox properties of biofilms in corrosion processes Keresztes Z, Felhosi I, Kalman E |
3851 - 3857 |
Characterization of deposits by direct observation and by electrochemical methods on a conductive transparent electrode. Application to biofilm and scale deposit under cathodic protection Cachet H, El Moustafid T, Herbert-Guillou D, Festy D, Touzain S, Tribollet B |
3859 - 3866 |
Electrolytic pickling of stainless steel studied by electrochemical polarisation and DC resistance measurements combined with surface analysis Hilden J, Virtanen J, Forsen O, Aromaa J |
3867 - 3877 |
On the development of the electrochemical potentiokinetic method Cihal V, Stefec R |
3879 - 3886 |
Electrochemical methods in corrosion on petroleum industry: laboratory and field results Garcia LACJ, Joia CJBM, Cardoso EM, Mattos OR |
3887 - 3893 |
Corrosion of dental amalgams: electrochemical study of Ag-Hg, Ag-Sn and Sn-Hg phases Acciari HA, Guastaldi AC, Brett CMA |
3895 - 3903 |
Phenomena disturbing electrochemical corrosion rate measurements for steel in alkaline environments Videm K |
3905 - 3912 |
Electrochemical behaviour of steel rebars in concrete: influence of environmental factors and cement chemistry Andrade C, Keddam M, Novoa XR, Perez MC, Rangel CM, Takenouti H |
3913 - 3929 |
Electrochemical methods in tribocorrosion: a critical appraisal Landolt D, Mischler S, Stemp M |