Artigo Revisado por pares

Enhanced Adsorption of Arsenic onto Maghemites Nanoparticles: As(III) as a Probe of the Surface Structure and Heterogeneity

2008; American Chemical Society; Volume: 24; Issue: 7 Linguagem: Inglês

10.1021/la702998x

ISSN

1520-5827

Autores

Mélanie Auffan, Jérôme Rose, Olivier Proux, Daniel Borschneck, Armand Masion, Perrine Chaurand, Jean‐Louis Hazemann, Corinne Chanéac, Jean‐Pierre Jolivet, Mark R. Wiesner, Alexander Van Geen, Jean-Yves Bottero,

Tópico(s)

Iron oxide chemistry and applications

Resumo

When normalized per unit of surface area, the quantity of arsenic adsorbed at the maghemite surface remains constant for particles between 300 and 20 nm. However, nanoparticles smaller than 20 nm exhibit enhanced adsorption capacity. The origin of this observed size-dependence for adsorption or "nano effect" is unclear. Arsenic was chosen as a probe of the surface structure to explore adsorption mechanisms occurring at the surface of maghemite nanoparticles (6 nm). Two factors contributing to the enhanced reactivity of nanoscale maghemites were determined. The first is related to a size-dependent structural modification of the surface of particles and the decrease of the occupancy of the tetrahedral site that leaves vacant, highly reactive adsorption sites. In particular, there is a site localized in a six-membered iron octahedral ring. This site is the only one for which an oxidation of AsIII occurs. The second factor relates to the thermodynamics of a decrease of the surface free energy. The high density of As adsorbed at the saturation of the surface can be related to crystal growth.

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