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Mathematical Modeling Dimensionless Numbers Governing Electrochemical Promotion and Metal-Support Interactions

3 MATHEMATICAL MODELING DIMENSIONLESS NUMBERS GOVERNING ELECTROCHEMICAL PROMOTION AND METAL-SUPPORT INTERACTIONS [Pg.500]

An important question frequently raised in electrochemical promotion studies is the following How thick can a porous metal-electrode deposited on a solid electrolyte be in order to maintain the electrochemical promotion (NEMCA) effect The same type of analysis is applicable regarding the size of nanoparticle catalysts supported on commercial supports such as Zr02, Ti02, YSZ, Ce02 and doped Zr02 or Ti02. What is the maximum allowable size of supported metal catalyst nanoparticles in order for the above NEMCA-type metal-support interaction mechanism to be fully operative  [Pg.500]

Both questions have been recently addressed via a surface diffusion-reaction model developed and solved to describe the effect of electrochemical promotion on porous conductive catalyst films supported on solid electrolyte supports.23 The model accounts for the migration (backspillover) of promoting anionic, O5, species from the solid electrolyte onto the catalyst surface. The [Pg.500]




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Dimensionless

Electrochemical interaction

Electrochemical metal

Electrochemical metallization

Electrochemical model

Government interaction

Government support

Interaction model

Interaction number

Interactive model

Mathematical modeling electrochemical

Metal support interaction

Model metallic

Model numbers

Model support

Promoter interaction

Promotion, electrochemical

Promotional model

Support interaction

Supported interactions

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