Large-scale production of self-assembled SnO2 nanospheres and their application in high-performance chemiluminescence sensors for hydrogen sulfide gas
- 13 February 2007
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Journal of Materials Chemistry
- Vol. 17 (18), 1791-1796
- https://doi.org/10.1039/b617114a
Abstract
Mesoporous SnO2 nanospheres with high thermal stability have been fabricated via reaction of sodium stannate with CO2 controllably released from urea under hydrothermal conditions. The resultant products were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), nitrogen sorption and FTIR analysis. It was indicated that the products exhibited nearly monodisperse mesoporous or hollow spherical nanostructures with sizes in the range of ca. 25–50 nm, which were composed of nanocrystals with sizes of less than 10 nm. The formation mechnism of SnO2 nanospheres was also discussed. Urea not only acted as the CO2 resource for the formation of SnO2 primary nanocrystals, but also played an important role in their self-assembly into nanospheres. The as-prepared SnO2 nanospheres exhibited superior sensitivity, high selectivity, and extremely rapid response for detecting H2S gas based on catalytic chemiluminescence (CL) characteristics.Keywords
This publication has 32 references indexed in Scilit:
- Facile Synthesis of Tin Oxide Nanoparticles Stabilized by Dendritic PolymersJournal of the American Chemical Society, 2005
- Single‐Crystalline Iron Oxide NanotubesAngewandte Chemie International Edition, 2005
- Enhanced Gas Sensing by Individual SnO2 Nanowires and Nanobelts Functionalized with Pd Catalyst ParticlesNano Letters, 2005
- Mass Production and High Photocatalytic Activity of ZnS Nanoporous NanoparticlesAngewandte Chemie, 2005
- Recent developments and applications of chemiluminescence sensorsAnalytica Chimica Acta, 2005
- Electronic Control of Chemistry and Catalysis at the Surface of an Individual Tin Oxide NanowireThe Journal of Physical Chemistry B, 2005
- Organic–Inorganic Hybrid Nanoparticles with a Complex Hollow StructureAngewandte Chemie, 2004
- A highly selective chemiluminescent H2S sensorSensors and Actuators B: Chemical, 2004
- Sulfated Tin Oxide Nanoparticles as Supports for Molecule-Based Olefin Polymerization CatalystsNano Letters, 2004
- The effects of crystallite growth and dopant migration on the carbon monoxide sensing characteristics of nanocrystalline tin oxide based sensor materialsJournal of Materials Chemistry, 1998