The mechanisms of the (110) Al 2O 3 + (001) ZnO interfacial reaction, that eventually yields the spinel ZnAl 2O 4, has been studied using a multitechnique approach involving local- and long-range structural probes (EXAFS, ?-XANES, and XRPD) and a surface analytical probe such as SIMS. It is demonstrated that the reaction involves a series of different steps, where at least two different nonequilibrium compounds are formed and then transformed into the spinel. One of these compounds, playing a role similar to reactive intermediates in solution chemistry, has been trapped. To the best of our knowledge, this is the first time that such a kind of behavior has been demonstrated for a heterogeneous solid state reaction. It is argued that the critical step is a concerted, homogeneous movement of a set of atoms, rather than long-range diffusion. The implications of these findings for the fabrication of ceramic and nanoscale materials are discussed.

Mechanisms of Reactions in the Solid State: (110) Al2O3 + (001) ZnO Interfacial Reaction.

D'Acapito F;
2012

Abstract

The mechanisms of the (110) Al 2O 3 + (001) ZnO interfacial reaction, that eventually yields the spinel ZnAl 2O 4, has been studied using a multitechnique approach involving local- and long-range structural probes (EXAFS, ?-XANES, and XRPD) and a surface analytical probe such as SIMS. It is demonstrated that the reaction involves a series of different steps, where at least two different nonequilibrium compounds are formed and then transformed into the spinel. One of these compounds, playing a role similar to reactive intermediates in solution chemistry, has been trapped. To the best of our knowledge, this is the first time that such a kind of behavior has been demonstrated for a heterogeneous solid state reaction. It is argued that the critical step is a concerted, homogeneous movement of a set of atoms, rather than long-range diffusion. The implications of these findings for the fabrication of ceramic and nanoscale materials are discussed.
2012
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
Istituto Officina dei Materiali - IOM -
INITIAL-STAGES
ZNO FILMS
KIRKENDALL
INTERFACES
OXIDES
SIMS
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/241242
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