Zeta potential as a tool for functional materials development

Дзета-потенциал как инструмент разработки функциональных материалов
P. Baeza, Ana Serrano-Lotina, Raquel Portela, Víctor Alcolea-Rodriguez, M. Villarroel, P. Ávila
2022-08-02

electrophoretic migrationfunctional materialsindustrial catalystsisoelectric pointzeta potential
The importance of the isoelectric point for the preparation and characterization of functional materials to understand their behavior and optimize their performance is highlighted, with especial focus on industrial catalysts. In different liquid-phase steps involved in materials synthesis, the knowledge of the surface charge as a function of the pH of the medium is fundamental, since it is the dynamizing agent of processes such as gelation, peptization, coagulation and agglomeration to form solid particles. Therefore, zeta potential (ζ) measurements, often based on electrophoretic migration techniques, are a powerful source of information. The basic principles are introduced to explain through relevant examples the possibilities for materials design. Regarding materials preparation, the measurement of the zeta potential to control the synthesis and coating of supports is reviewed, with special attention to shaped supports. Aspects as the influence of the binders on the supports properties depending on their mutual interaction are analyzed, with example systems based on TiO2 or Al2O3 and natural silicates such as sepiolite. Also, how the knowledge of ζ as a function of pH allows, by choosing the appropriate pH, the preferential impregnation of noble metals on porous supports, as well as the washcoating of dense ceramic monoliths with porous supports. Special attention has been paid to surfaces characterization based on the use of zeta potential measurements to estimate the formation and relative location of species, the apparent surface coverage, or the adsorption and reactivity, to establish synthesis strategies to achieve specific properties.
1
Selecting pH according to zeta-potential behavior can promote preferential noble-metal impregnation on porous supports and improve washcoating of dense ceramic monoliths.
2
The isoelectric point and pH-dependent surface charge are fundamental for understanding and optimizing functional-material behavior, especially in industrial catalysts.
3
Zeta potential enables optimization of support synthesis and coating, including shaped supports, by revealing interactions between binders and materials such as TiO2, Al2O3, and sepiolite.
4
Zeta-potential characterization can estimate species formation and relative location, apparent surface coverage, adsorption, and reactivity, supporting targeted synthesis strategies.
5
Zeta-potential measurements provide actionable information for controlling gelation, peptization, coagulation, and agglomeration during liquid-phase materials synthesis.

Functional materials, especially industrial catalyst supports and their coated or shaped forms

Surface-charge behavior characterized by zeta potential and isoelectric point as a function of pH, and its use in controlling synthesis, coating, impregnation, dispersion, adsorption, and surface reactivity

Publication Details
Publication Date
2022-08-02
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Authors
P. Baeza
Ana Serrano-Lotina
Raquel Portela
Víctor Alcolea-Rodriguez
M. Villarroel
P. Ávila
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