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Flame spray pyrolysis: An enabling technology for nanoparticles design and fabrication

Nanoscale · 2010 · Vol. 2(8) · pp. 1324–1324
Wey Yang TeohRose AmalLutz Mädler

Abstract

Combustion of appropriate precursor sprays in a flame spray pyrolysis (FSP) process is a highly promising and versatile technique for the rapid and scalable synthesis of nanostuctural materials with engineered functionalities. The technique was initially derived from the fundamentals of the well-established vapour-fed flame aerosols reactors that was widely practised for the manufacturing of simple commodity powders such as pigmentary titania, fumed silica, alumina, and even optical fibers. In the last 10 years however, FSP knowledge and technology was developed substantially and a wide range of new and complex products have been synthesised, attracting major industries in a diverse field of applications. Key innovations in FSP reactor engineering and precursor chemistry have enabled flexible designs of nanostructured loosely-agglomerated powders and particulate films of pure or mixed oxides and even pure metals and alloys. Unique material morphologies such as core–shell structures and nanorods are possible using this essentially one step and continuous FSP process. Finally, research challenges are discussed and an outlook on the next generation of engineered combustion-made materials is given.

Coagulation and Flocculation StudiesFlame retardant materials and propertiesNanoparticles: synthesis and applicationsMaterials scienceCombustionFabricationPyrolysisNanotechnologyNanoparticleThermal sprayingChemical engineeringProcess engineeringCoating

Funding

  • City University of Hong Kong
  • University of New South Wales
  • University of Hong Kong
  • Australian Research Council
Citations
696
FWCI
31.46
field-weighted impact
References
193
Percentile
100%
vs. same field & year
Citations per year
References
Ceramic Powder Synthesis by Spray Pyrolysis
Journal of the American Ceramic Society · 1993 · 1,112 citations
Preparation of nanoparticles via spray route
Chemical Engineering Science · 2003 · 632 citations
Flame-made Ceria Nanoparticles
Journal of materials research/Pratt's guide to venture capital sources · 2002 · 363 citations
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