2007
DOI: 10.1002/adem.200700076
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Novel Method for Synthesis of Nano‐Materials: Combustion of Active Impregnated Layers

Abstract: Nanomaterials with characteristic structural dimensions on the order of few nanometers (1-100 nm) attract wide attention owing to their unique properties. They found a variety of applications in different branches of science and industry including catalysis, micro and biotechnologies, energy storage and conversion devices, such as fuel cells.Different techniques have been developed for nanomaterial preparations, solid-state, wet-type and CVD methods, mechano-, plasma-and combustion synthesis. A combination of … Show more

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Cited by 47 publications
(44 citation statements)
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“…The overall reaction process is very fast and results in the formation of nanograins exhibiting a high purity due to vaporization of all volatile species at high reaction temperatures generated by this exothermic reaction. Another important advantage of this method is a possibility of the formation of complex oxide nanop- owders for different applications as structural ceramics, catalysts, bio-or fuel cell materials [183][184][185][186][187][188].…”
Section: Combustion Synthesis Research In Usa After 1980mentioning
confidence: 99%
“…The overall reaction process is very fast and results in the formation of nanograins exhibiting a high purity due to vaporization of all volatile species at high reaction temperatures generated by this exothermic reaction. Another important advantage of this method is a possibility of the formation of complex oxide nanop- owders for different applications as structural ceramics, catalysts, bio-or fuel cell materials [183][184][185][186][187][188].…”
Section: Combustion Synthesis Research In Usa After 1980mentioning
confidence: 99%
“…To conclude, we can note an interesting type of combustion where the above-described solutions impregnate porous inert [25,41,43] and reactive [25,44] media. It appears that the combustion wave can be initiated in such systems as well.…”
Section: Sol-gel Systemsmentioning
confidence: 96%
“…A n a l y t i c a l -g r a d e C u ( N O3)2 3H2O , Zn(NO3)2 6H2O and citric acid are used as raw materials. The metal nitrates with the mole ratio of Cu/Zn 1/1 (noted as M, M Cu 2 Zn 2 ) and citric acid (noted as CA) are first dissolved in distilled water with M/CA molar ratio of 1/1.4, because the as-mentioned catalyst (M/CA 1/1.4) was formerly proved 12) to exhibit better reaction results. The solutions are adjusted using ammonia to reach a pH value of 7.…”
Section: Preparation Of Catalystsmentioning
confidence: 99%