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Deprotection, Tethering, and Activation of a Catalytically Active Metalloporphyrin to a Chemically Active Metal Surface: [SAc]<sub>4</sub>P−Mn(III)Cl on Ag(100)
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Citations
23
References
2009
Year
Inorganic ChemistryChemical EngineeringAdvanced Oxidation ProcessEngineeringTemperature Porphyrin DiffusionSurface ChemistrySurface FunctionalizationSurface ScienceAxial ChlorineChemisorptionCatalysisAdsorptionChemistrySurface ReactivityHigh Resolution XpsCatalytically Active Metalloporphyrin
The adsorption and subsequent thermal chemistry of the acetyl-protected manganese porphyrin, [SAc](4)P-Mn(III)Cl on Ag(100) have been studied by high resolution XPS and temperature-programmed desorption. The deprotection event, leading to formation of the covalently bound thioporphyrin, has been characterized and the conditions necessary for removal of the axial chlorine ligand have been determined, thus establishing a methodology for creating tethered activated species that could serve as catalytic sites for delicate oxidation reactions. Surface-mediated acetyl deprotection occurs at 298 K, at which temperature porphyrin diffusion is limited. At temperatures above approximately 425 K porphyrin desorption, diffusion and deprotection occur and at >470 K the axial chlorine is removed.
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