Facile Synthesis, Microstructure, and Gas Sensing Properties of NdCoO3 Nanoparticles

Author:

Gildo-Ortiz Lorenzo1ORCID,Guillén-Bonilla Héctor2ORCID,Reyes-Gómez Juan3,Rodríguez-Betancourtt Verónica María4,Olvera-Amador M. de la L.5,Eguía-Eguía Sandra Irene1,Guillén-Bonilla Alex6,Santoyo-Salazar Jaime7ORCID

Affiliation:

1. Nanociencias y Nanotecnología, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, 07360 México City, Mexico

2. Departamento de Ingeniería de Proyectos, CUCEI, Universidad de Guadalajara, 44410 Guadalajara, JAL, Mexico

3. Facultad de Ciencias, Universidad de Colima, 28045 Colima, COL, Mexico

4. Departamento de Química, CUCEI, Universidad de Guadalajara, 44410 Guadalajara, JAL, Mexico

5. Departamento de Ingeniería Eléctrica-SEES, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, 07360 México City, Mexico

6. Departamento de Ciencias Computacionales e Ingenierías, CUVALLES, Universidad de Guadalajara, 46600 Ameca, JAL, Mexico

7. Departamento de Física, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, 07360 México City, Mexico

Abstract

NdCoO3 nanoparticles were successfully synthesized by a simple, inexpensive, and reproducible solution method for gas sensing applications. Cobalt nitrate, neodymium nitrate, and ethylenediamine were used as precursors and distilled water as solvent. The solvent was evaporated later by means of noncontinuous microwave radiation at 290 W. The obtained precursor powders were calcined at 200, 500, 600, and 700°C in a standard atmosphere. The oxide crystallized in an orthorhombic crystal system with space group Pnma (62) and cell parameters a=5.33 Å, b=7.52 Å, and c=5.34 Å. The nanoparticles showed a diffusional growth to form a network-like structure and porous adsorption configuration. Pellets prepared from NdCoO3 were tested as gas sensors in atmospheres of carbon monoxide and propane at different temperatures. The oxide nanoparticles were clearly sensitive to changes in gas concentrations (0–300 ppm). The sensitivity increased with increasing concentration of the gases and operating temperatures (25, 100, 200, and 300°C).

Funder

Consejo Nacional de Ciencia y Tecnología

Publisher

Hindawi Limited

Subject

General Materials Science

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