Journalartikel

Understanding the Impedance of Mesoporous Oxides: Reliable Determination of the Material-Specific Conductivity


AutorenlisteEckhardt, Janis K.; Heiliger, Christian; Elm, Matthias T.

Jahr der Veröffentlichung2023

Seiten35332-35341

ZeitschriftACS Applied Materials & Interfaces

Bandnummer15

Heftnummer29

ISSN1944-8244

eISSN1944-8252

DOI Linkhttps://doi.org/10.1021/acsami.3c05561

VerlagAmerican Chemical Society


Abstract
The unique architecture of ordered mesoporous oxidesmakes thema promising class of materials for various electrochemical applications,such as gas sensing or energy storage and conversion. The high accessibilityof the internal surface allows tailoring of their electrochemicalproperties, e.g., by adjusting the pore size or surface functionalization,resulting in superior device performance compared to nanoparticlesor disordered mesoporous counterparts. However, optimization of themesoporous architecture requires reliable electrochemical characterizationof the system. Unfortunately, the interplay between nanocrystallinegrains, grain boundaries, and the open pore framework hinders a simpleestimation of material-specific transport quantities by using impedancespectroscopy. Here, we use a 3D electric network model to elucidatethe impact of the pore structure on the electrical transport propertiesof mesoporous thin films. It is demonstrated that the impedance responseis dominated only by the geometric current constriction effect arisingfrom the regular pore network. Estimating the effective conductivityfrom the total resistance and the electrode geometry, thus, differsby more than 1 order of magnitude from the material-specific conductivityof the solid mesoporous framework. A detailed analysis of computedimpedances for varying pore size allows for the correlation of theeffective conductivity with the material-specific conductivity. Wederive an empirical expression that accounts for the porous structureof the thin films and allows a reliable determination of the material-specificconductivity with an error of less than 8%.



Zitierstile

Harvard-ZitierstilEckhardt, J., Heiliger, C. and Elm, M. (2023) Understanding the Impedance of Mesoporous Oxides: Reliable Determination of the Material-Specific Conductivity, ACS Applied Materials & Interfaces, 15(29), pp. 35332-35341. https://doi.org/10.1021/acsami.3c05561

APA-ZitierstilEckhardt, J., Heiliger, C., & Elm, M. (2023). Understanding the Impedance of Mesoporous Oxides: Reliable Determination of the Material-Specific Conductivity. ACS Applied Materials & Interfaces. 15(29), 35332-35341. https://doi.org/10.1021/acsami.3c05561



Schlagwörter


currentconstrictionelectrochemical applicationsMesoporous oxidesTRANSITION-METAL OXIDESZIRCONIA THIN-FILMS


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