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SERS of Corrosion Inhibitors on Bare Transition Metal Electrodes

7 SERS of Corrosion Inhibitors on Bare Transition Metal Electrodes [Pg.150]

The Fe-on-Ag and Ag-on-Fe approaches were subject to some drawbacks. In the former case, pinhole-free metal layers of a few monolayers thickness were difficult to deposit, they were unlikely to have the same crystal stmcture as bulk Fe, and they had insufficient stability over a wide potential range. With the Ag-on-Fe approach, it could not be excluded that species adsorbed at the Ag/Fe boundary contributed to the overall SERS response in a major fashion. As noted in Chapter 7, however, these concerns were minimized by advances in Raman instrumentation (i.e., the advent of confocal microscopy and the holographic notch filter) and the development of special oxidation/reduction treatments for roughening the electrode surfaces. [Pg.150]

Year Metal Medium Fbssive film composition Reference(s) [Pg.151]

1989 Fe H2SO4 or Borate or Carbonate Fe(OH)2 + 5-FeOOH in H2SO4 or borate FeC03/Fe(0H)3 in carbonate [27] [Pg.151]

1991 Fe Borate Active region Fe(OH)2 + FeO + unknown species From passivation to Flade potential Fe304 + Fe(ll,lll)(OH)/ Positive of Flade potential F6304 + Fe(ll,lll)(OH)/ + /-FeOOH. [80,81 ] [Pg.151]




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Bare

Corrosion inhibitors

Corrosion metals

Corrosion of metals

Corrosion, metallic

Inhibitors of corrosion

Metallic electrodes

SERS

Ser

Transition corrosion

Transition inhibitors

Transition-Metal ons

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