Surface Coordination Chemistry: Corrosion Inhibition by Tetranuclear Cluster Formation of Iron with Salicylaldoxime
Surface Coordination Chemistry: Corrosion Inhibition by Tetranuclear Cluster Formation of Iron...
Thorpe, Jacqueline M.; Beddoes, Roy L.; Collison, David; Garner, C. David; Helliwell, Madeleine; Holmes, Jeremy M.; Tasker, Peter A.
1999-04-19 00:00:00
A tetranuclear iron cluster is the principal component of the purple coatings produced by treating a mild steel surface with a salicylaldoxime corrosion inhibitor. This was shown by comparison of the spectroscopic data with those of the cluster ({Fe(salH)(HsalH)}4), which was obtained from FeCl3 and salicylaldoxime (H2salH) and has a distorted tetrahedral arrangement of FeIII atoms coordinated by terminal (1−) and bridging (2−) salicylaldoximate ligands (the central core of the cluster is depicted).
http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.pngAngewandte Chemie International EditionWileyhttp://www.deepdyve.com/lp/wiley/surface-coordination-chemistry-corrosion-inhibition-by-tetranuclear-1RLv8ZS4rk
Surface Coordination Chemistry: Corrosion Inhibition by Tetranuclear Cluster Formation of Iron with Salicylaldoxime
A tetranuclear iron cluster is the principal component of the purple coatings produced by treating a mild steel surface with a salicylaldoxime corrosion inhibitor. This was shown by comparison of the spectroscopic data with those of the cluster ({Fe(salH)(HsalH)}4), which was obtained from FeCl3 and salicylaldoxime (H2salH) and has a distorted tetrahedral arrangement of FeIII atoms coordinated by terminal (1−) and bridging (2−) salicylaldoximate ligands (the central core of the cluster is depicted).
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