Cerium oxide nanoparticles: Size-selective formation and structure analysis

Наночастицы оксида церия: селективное по размеру формирование и анализ структуры
Feng Zhang, Siu‐Wai Chan, Jonathan E. Spanier, Ebru Apak, Qiang Jin, Richard D. Robinson, Irving P. Herman
2002-01-07

cerium oxide nanoparticleshigh-resolution transmission electron microscopylattice expansionpoint defectssize-selective formation
Nanoparticles of cerium oxide with a narrow size distribution (±15%) are prepared by mixing cerium nitrate solution with an ammonium reagent. High-resolution transmission electron microscopy (TEM) indicates that over 99% of the synthesized particles are single crystals. TEM and photon absorption are used to monitor particle size. The lattice parameter increases up to 0.45% as the particle size decreases to 6 nm, as observed with x-ray diffraction. Raman spectra also suggest the particle-size effect and concomitant lattice expansion. The lattice expansion can be explained by increased concentrations of point defects with decreasing particle size.
1
Cerium oxide nanoparticles with a narrow size distribution of ±15% were synthesized by mixing cerium nitrate solution with an ammonium reagent.
2
High-resolution TEM showed that more than 99% of the synthesized nanoparticles are single crystals.
3
TEM and photon absorption were used to monitor nanoparticle size, while X-ray diffraction and Raman spectroscopy detected size-dependent structural changes.
4
The cerium oxide lattice parameter increased by up to 0.45% as particle size decreased to 6 nm.
5
The observed lattice expansion is attributed to increasing concentrations of point defects in smaller nanoparticles.

cerium oxide nanoparticles

size-dependent crystal structure, lattice expansion, and point-defect concentration

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Publication Date
2002-01-07
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Authors
Feng Zhang
Siu‐Wai Chan
Jonathan E. Spanier
Ebru Apak
Qiang Jin
Richard D. Robinson
Irving P. Herman
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