1951-1988 

 

1.       The dielectric constant of the solution in the diffuse and Helmholtz double layers at a charged interface in aqueous solutions. B. E. Conway, J.O’M. Bockris and I.A. Ammar,  Transactions of the Faraday Soc. 47, 756 (1951).

2.      The behavior of chromium on Cathodic and anodic polarization. I.M. Issa, I.A. Ammar and H. Khalifa, Journal of Physical Chemistry 59, 492 (1955).

3.      Mechanism of hydrogen evolution at tellurim cathodes in hydrochloric acid, I.A. Ammar and S. Awad, Journal of the Electrochemical Society 103, 182 (1956).

4.      Hydrogen overpotential at Electrodeposited nickel cathodes in hydrochloric acid solutions, I.A. Ammar and S. Awad, Journal of Physical Chemistry 60, 837 (1956)

5.      The effect of some corrosion inhibitors and activators on the hydrogen overpotential at Fe cathodes in NaOH solutions. I.A. Ammar and S. Awad, Journal of Physical Chemistry 60, 871 (1956)

6.      Hydrogen overpotential on silver in sodium hydroxide solutions, I.A. Ammar and S. Awad, Journal of Physical Chemistry 60, 1290 (1956)

7.      Hydrogen overpotential at electrodeposited copper in hydrochloric acid, S.E. Wakkad, I.A. Ammar and H. Sabry, Journal of Chemical Society (London) 3020 (1956).

8.     Hydrogen overpotential on electrodeposited Ni in NaOH solutions, I.A. Ammar and S. Awad, Journal of the Electrochemical Society 104, 686 (1957)

9.      The mechanism of the hydrogen evolution reaction on platinum, silver and tungsten surface in acid solutions, J.O’M. Bockris, I.A. Ammar and A.K.M.S.Huq, Journal of Physical Chemistry 61, 879 (1967)

10.  Effect of pH on corrosion potentials, I.A. Ammar and S.Riad, Journal of Physical Chemistry 62, 150 (1958).

11.   Polarization and overpotential of Au/Cu Alloy in aqueous solutions, I.A. Ammar and S. Riad, Journal of Physical Chemistry 62, 660 (1958).

12.  Hydrogen overpotential on electrodeposited copper/tin alloys, I.A. Ammar and H. Sabry, Journal of Physical Chemistry 62, 801 (1958).

13.  Hydrogen Overpotential on mercury in perchloric acid solutions, I.A. Ammar and M. Hassanein, Journal of Physical Chemistry 62, 805 (1958).

14.  Effect of sodium pyrophosphate on polarization and corrosion of tin, I.A. Ammar and S. Riad, Journal of the Electrochemical Society 106, 926 (1959).

15.   Overpotential on activated platinum cathodes in sodium hydroxide solutions, I.A. Ammar and S. Darwish, Journal of Physical Chemistry 63, 983 (1959).

16.  Hydrogen overpotential on cadium, I.A. Ammar and M. Hassanein, Journal of Physical Chemistry 64, 558 (1960).

17.   Effect of some additives on dissolution and polarization of Fe in H2SO4, I.A. Ammar and S. Darwish, Comptes Rendus, Symposium European sur les Inhibiteurs de Corrosion, Ferrara (Italy) September (1960) p. 511. Published (1961).

18.  Effect of electropolishing on hydrogen overpotential, I.A. Ammar, U.A.R. Journal of Chemistry 4, 31 (1961).

19.  Corrosion of Duraluminium in acid and alkaline solutions, I.A. Ammar and F. Nazmi, Corrosion Prevention and Control (London) 9, 31 (1962).

20. Corrosion of Aluminium in sodium carbonate solutions, I.A. Ammar, M.A. Soliman and S.E. Sasa, Corrosion Prevention and Control (London) 10, 35 (1963).

21.  Potentiostatic behavior of passive nickel in sulphuric acid, I.A. Ammar and S. Darwish, Electrochim. Acta 11, 1541 (1966).

22. Growth of passive layers on iron and nickel, I.A. Ammar and S. Darwish, Electrochim. Acta 12, 225 (1967).

23. Adsorption of iodide on polarized iron, I.A. Ammar, S. Darwish and M. Etman, Electrochim. Acta 12, 485 (1967).

24. Potentiometric study of silver cyanide complexes, I.A. Ammar, S. Darwish and K. Rizk, Electrochim. Acta 12, 647 (1967).

25.  Adsorption of bromide ion on polarized iron, I.A. Ammar, S. Darwish and M.W. Khalil, Electrochim. Acta 12, 657 (1967).

26. The hydrogen evolution reaction: influence of zeta potential and surface heterogeneity on Tafel slope, I.A. Ammar and S. Darwish, Electrochim. Acta 12, 833 (1967).

27.  Effect of some ions on inhibition of the acid corrosion of Fe by thiourea, I.A. Ammar and S. Darwish, Corrosion Science 7, 579 (1967).

28. A treatment of adsorption equilibria of Br- and I- ions on Fe in the active state, I.A. Ammar, S. Darwish, M. Etman and W. Khalil, Electrochim.  Acta 13, 603 (1968).

29. Effect of halogens on passivity of nickel: I-chloride ions, I.A. Ammar and S. Darwish, Electrochim. Acta 13, 781 (1968).

30. Potentiometric study of aqueous cyanide complexes of mercury (II), I.A. Ammar, S. Darwish and K. Rizk, Electrochim. Acta 13, 797 (1968).

31.  Effect of halogens on passivity of nickel: II-bromide ions, I.A. Ammar, S. Darwish and S. Riad, Electrochim. Acta 13, 1875 (1963).

32. Dichromate as inhibitor for the corrosion of Cu in HCl, I.A. Ammar and S. Riad, Corrosion Science 9, 423 (1969).

33. pH-titration study of the pyrophosphate complexes with Cu2+ and Ni2+, I.A. Ammar and A. Saad, Electrochim. Acta 15, 545 (1970).

34. Anodic passivation of iron in alkaline solutions containing halides, I.A. Ammar and M.W. Khalil, Electrochim. Acta 15, 717 (1970).

35.  Stoichiometry of the Co(II) pyrophosphate complexes by pH measurements, I.A. Ammar and S. Riad, Electrochim. Acta 16, 383 (1971).

36. Evidence for Electrodeposition of halides on polarized iron, I.A. Ammar and M.W. Khalil, Electrochim. Acta 16, 939 (1971).

37.  Anodic oxidation of bismuth in H2SO4 solutions, I.A. Ammar and M.W. Khalil, Electrochim. Acta 16, 1379 (1971).

38. Kinetics of anodic oxide film growth on titanium: I-acid media, I.A. Ammar and I. Kamal, Electrochim. Acta 16, 1539 (1971).

39. Kinetics of anodic oxide film growth on titanium: II-neutral and alkaline media, I.A. Ammar and I. Kamal, Electrochim. Acta 16, 1555 (1971).

40. Anodic oxidation of bismuth in sulphate, carbonate and hydroxide solutions, I.A. Ammar and M.W. Khalil, Electrochim. Acta 16, 1601 (1971).

41.  Anodic oxide film on antimony: I-role of experimental conditions and growth kinetics in acid media, I.A. Ammar and A. Saad, J. Electroanal. Chem. 30, 395 (1971).

42. Behavior of bismuth as valve metal in phosphate, borate, benzoate and tartarate solutions, I.A. Ammar and M.W. Khalil, J. Electroanal. Chem. 32, 373 (1971).

43. Anodic behavior of tungsten: I-oxidation kinetics in acid media, I.A. Ammar and R. Salim, Corrosion Science 11, 591 (1971).

44. Anodic oxide film on antimony: II-parameters of film growth and dissolution kinetics in neutral and alkaline media, I.A. Ammar and A. Saad, J. Electroanal. Chem. 34, 195 (1972).

45.  Anodenprozesse an aluminium unterhalb des potentials der sauerstoffentwicklung, I.A. Ammar and M.W. Khalil, Metalloberflache Angewandte Elektrochemie 26, 337 (1972).

46. Einfluse der temperature auf die anodische oxidation von niob in phosphatlosung, I.A. Ammar and I.K. Ismail, Metalloberflache Angewandte Elektrochemie 26, 378 (1972).

47.  Wachstum anodischer oxidfilme auf tellur, I.A. Ammar, E.A. Ammar and R. Salim, Metalloberflache Angewandte Elektrochemie 26, 427 (1972).

48. Temperature dependence of the anodic oxidation of titanium below the oxygen evolution potential, I.A. Ammar and I.K. Ismail, Werkstoffe und Korrosion 23, 25 (1972).

49. Anodic polarization of tungsten in neutral and alkaline solutions under conditions of anode film growth, I.A. Ammar and R. Salim, Werkstoffe und Korrosion 23, 161 (1972).

50. Spontaneous and anodic oxidation of tantalum and zirconium in phosphate solutions, I.A. Ammar and I.K. Ismail, Werkstoffe und Korrosion 23, 168 (1972).

51.   Die verwendung von thioharnstoff als korrosions-inhibitor bei eisen: eine untersuchung uber die corrosion von erdolbohrturmen, I.A. Ammar and F.M. Khorafi, Metalloberflache Angewandte Elektrochemie 27, 14 (1973).

52.  Parameter des anodischen oxidwachstums auf niob, I.A. Ammar, S. Darwish and E.A. Ammar, Metalloberflache Angewandte Elektrochemie 27, 163 (1973).

53.  Stability of the anodic film on aluminium in relation to the nature of some anions, I.A. Ammar, S. Darwish and E.A. Ammar, Werkstoffe und Korrosion 24, 200 (1973).

54.  Relation between corrosion potential and concentration based on two-site adsorption model, I.A. Ammar and S. Darwish, Werkstoffe und Korrosion 24, 692 (1973).

55.  Adsorbability of thiourea on iron cathodes, I.A. Ammar and F.M. Khorafi, Werkstoffe und Korrosion 24, 702 (1973).

56.  Cathodic hydrogen evolution on tungsten: significance of the dual Tafel slopes, I.A. Ammar, S. Darwish and R. Salim, J. Electroanal. Chem. 52, 443 (1974).

57.  Anodische polarization von antimony in losungen aus borat und salzen organischer sauren, I.A. Ammar, S. Darwish und A.  Saad, Metalloberflache Angewandte Elektrochemie 28, 349 (1974).

58. Salt and pH effects for electrochemical mechanism of Cathodic HER in alkaline solutions, I.A. Ammar and S. Darwish, Bull. Faculty Sci., Riyad Univ. 6, 72 (1974).

59.  Kinetics of the anodic dissolution of tungsten in strong alkaline solutions, I.A. Ammar and S. Darwish, Bull. Faculty Sci, Riyad Univ. 6, 146 (1974).

60. Use of tungsten as indicator electrode for Potentiometry at constant intensity, S. Darwish and I.A. Ammar, Bull. Faculty Sci, Riyad Univ. 6, 158 (1974).

61.  Anodische polarization von wolfram in strak alkalishen losungen, I.A. Ammar, S. Darwish und R. Salim, Metalloberflache Angewandte Elektrochemie, Heft 8, 395 (1975).

62. Potentiostatic anode film growth on bismuth, I.A. Ammar, S. Darwish and M.W. Khalil, Corrosion 32, 173 (1976).

63. Effect of thiourea on the acid corrosion and electrochemical polarization of nickel, I.A. Ammar, S. Darwish and M. Selim, Zeit fur physikalische Chemie 259, 205 (1978).

64. Cathodic hydrogen evolution on bismuth in acid media, I.A. Ammar, S. Darwish and M.W. Khalil, Zeit fur physikalische Chemie 259, 193 (1978).

65.  On the electrochemical polarization of iron in carbonate and sulphate solutions, I.A. Ammar and S. Darwish,  Metalloberflache Angewandte Elektrochemie 31, 124 (1977).

66. Capacity of anodic oxide films on bismuth in various solutions, S. Darwish, I.A. Ammar and M.W. Khalil, Corrosion, NACE 36, 220 (1980).

67.  Prediction pathways  for the dissolution of iron, I.A. Ammar, Corrosion Science 17, 583 (1977).

68. Note on the rapid monitoring of corrosion rate, I.A. Ammar and S. Darwish, Egyptian J. Chem. 21, 379 (1978).

69. Contribution to the theory of galvanostatic anodization, I.A. Ammar, Symbosium Bilateral Workshop, NRC Cairo and the American Chem. Soc., Nov. 28-Dec 8 (1977).

70. On the determination of oxide formation rate for tantalum in chromate bath from cell voltage, I.A. Ammar and RI. El Kasimi, Zeit Werkstofftech 12, 84 (1981).

71.   Kinetic parameters for growth of barrier type anodic oxide on valve metals from galvanostatic anodization, I.A. Ammar and S. Darwish, The Electrochem. Soc., Extended Abstract No 57, Spring Meeting Minneapolis, May 10-15 (1981) p. 163.

72.  The activation energy for ion transport during anode film growth on niobium and titanium, I.A. Ammar and S. Darwish, The Electrochem. Soc., Extended Abstract No 60, Spring Meeting, Minneapolis, May 10-15 (1981) p. 169.

73.  Galvanostatic formation of barrier-type anodic oxides: experimental factors affecting oxide growth, I.A. Ammar, S. Darwish and M.W. Khalil, Zeit Werkstofftech 12, 309 (1981).

74.  Galvanostatic formation of barrier-type anodic oxides: simplified theory of anodization, I.A. Ammar, S. Darwish and M.W. Khalil, Zeit Werkstofftech 12, 421 (1981).

75.  An approach on the mechanism of corrosion of tungsten and alkaline solutions, I.A. Ammar, S. Darwish and M.W. Khalil, Zeit Werkstofftech 13, 163 (1982).

76.  Calibration curves for rapid monitoring of corrosion rates, I.A. Ammar, S. Darwish and M.W. Khalil, Zeit Werkstofftech 13,305 (1982).

77.  Electrochemical polarization and passivation of tin in neutral solutions of chloride, bromide and iodide ions, I.A. Ammar, S. Darwish and A. Galal, Zeit Werkstofftech 13, 378 (1982).

78. The anodic behavior and passivity of tin in sulphate solutions, I.A. Ammar, S. Darwish, M.W. Khalil and A. Galal, Zeit Werkstofftech 14, 330 (1983).

79.  Electrochemical methods of corrosion rate determination, I.A. Ammar, Corrosion Monitoring Seminar, Arranged by the Egyptian Corrosion Society, May (1983).

80.Potentiodynamic and cyclic voltammetric studies on the passivity of tin in neutral phosphate buffer, I.A. Ammar, S. Darwish, M.W. Khalil and A. Galal, Zeit Werkstofftech 15, 340 (1984).

81.  Anodization of metals as a means of protection against corrosion. I.A. Ammar, French-Egyptian Symbosium on “Corrosion in industry and its control” El-Tebbin Institute of Metals Research, Helwan, 12-14 November (1984).

82. Anodization, I.A. Ammar, Metal Coatings Seminar, arranged by the Egyptian Corrosion Society, Cairo, March (1985).

83. Investigation of the passivit8y of tin in neutral media by cyclic galvanostatic polarization, I.A. Ammar, S. Darwish, M.W. Khalil and A. Galal, Z. Werkstofftech 16, 413 (1985).

84. Evidence of the activation-controlled galvanostatic growth of thin anode films on tin in some neutral media, I.A. Ammar, S. Darwish, M.W. Khalil and A. Galal, Z. Werstofftech 17, 174 (1986).

85. Some X-ray photo-electron spectroscopic measurements on passivated tin in some neutral media, I.A. Ammar, S. Darwish, M.W. Khalil and A. Galal, Z.Werkstofftech., 19, 294‑301, (1988).

86. Kinetics of the ferro/ferricyanide electron transfer reaction on anodically formed tin oxide, I.A. Ammar, M.W. Khalil and S. El-Taher, Electrochim. Acta, 33, 231 (1988).

87. Review on the electrochemical behavior of tin, I.A. Ammar, S. Darwish, M.W. Khalil and S. El-Taher, Materials Chemistry and Physics 21, 1 (1989).

88.Review on the electrochemical behavior of zirconium, I.A. Ammar, S. Darwish, M.W. Khalil and M.R. Abdel-Rahman, Journal of Materials Science, sent for publication in (1986).

89. Electrochemical studies on the passive behavior of tin in different buffer solutions, I.A. Ammar, M.W. Khalil and S. El-Taher, Mat.-wiss. u. Werkstofftech 19,271 (1988).

90. Studies on electroless deposition of nickel by electrochemical polarization, I.A. Ammar, S. El-Raghy and El-Sayed El-Raghy, Journal of Applied Electrochemistry, sent for publication in (1986)

 

 
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