4.7 Article Proceedings Paper

Gas-sensing properties of ordered mesoporous SnO2 and effects of coatings thereof

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SENSORS AND ACTUATORS B-CHEMICAL
卷 93, 期 1-3, 页码 590-600

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ELSEVIER SCIENCE SA
DOI: 10.1016/S0925-4005(03)00208-9

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mesoporous; tin dioxide; H-2; NOx; gas sensor

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Mesoporous structure and gas-sensing properties of SnO2 powders prepared by utilizing the self-assembly of a cationic surfactant under different conditions have been investigated. As-prepared SnO2 powders were characterized with ordered and hexagonal mesoporous structure (d(100) approximate to 4.4 nm) having a small crystallite size of 1.6-2.0 nm, and the size of agglomerated secondary particles tended to decrease with decreasing the concentration of a Sri source and a surfactant in a precursor solution. Treatment of as-prepared powders with phosphoric acid (PA) was effective for depressing the growth of SnO2 crystallite during calcination at elevated temperatures and then maintaining the ordered mesoporous structure, while the volume of ordered mesopores decreased. However, mesoporous SnO2 (m-SnO2) powder with a specific surface area of 374 m(2) g(-1) could be prepared even after calcination at 600 degreesC for 5 h by optimizing the preparation conditions. The m-SnO2 powders exhibited excellent H-2 sensitivity in proportion to surface area and high NO sensitivity comparable to NO, sensitivity. However, their resistance levels in air were close to the limit for practical measurement. Surface modification of conventional SnO2 (c-SnO2) powder with m-SnO2, was found to be effective for improving gas-sensing properties of c-SnO2, while maintaining the sensor resistance in air to be close to that of c-SnO2. H-2 sensitivity of the c-SnO2 modified with m-SnO2 was lower than that of m-SnO2, but NO2 sensitivity improved markedly by the surface modification with m-SnO2. (C) 2003 Elsevier Science B.V. All rights reserved.

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