Abstract
We report on the synthesis and CO gas-sensing properties of mesoporous tin(IV) oxides (SnO2). For the synthesis cetyltrimethylammonium bromide (CTABr) was used as a structure-directing agent; the resulting SnO 2 powders were applied as films to commercially available sensor substrates by drop coating. Nitrogen physisorption shows specific surface areas up to 160 m2·g-1 and mean pore diameters of about 4 nm, as verified by TEM. The film conductance was measured in dependence on the CO concentration in humid synthetic air at a constant temperature of 300°C. The sensors show a high sensitivity at low CO concentrations and turn out to be largely insensitive towards changes in the relative humidity. We compare the materials with commercially available SnO2-based sensors. © 2006 by MDPI.
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Wagner, T., Kohl, C. D., Fröba, M., & Tiemann, M. (2006). Gas sensing properties of ordered mesoporous SnO2. In Sensors (Vol. 6, pp. 318–323). MDPI AG. https://doi.org/10.3390/s6040318
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