نتایج جستجو برای: gel combustion

تعداد نتایج: 135258  

Journal: :international journal of bio-inorganic hybrid nanomaterials 0

nanocrystalline complex oxides have been synthesized by combination of sol–gel auto combustion and ultrasonic irradiation techniques using copper nitrate, zinc nitrate as metallic nitrates and glycine, urea and thiourea as fuels. sol-gel combustion (combination of the chemical sol–gel process and the combustion process) as a proper synthesized technique is used to synthesize zno/cuo nanocomposi...

Journal: :international journal of nano dimension 0
m. k. shobana center for advanced material technology, kookmin university, 861-1 jeongneung-dong, seongbuk-gu, seoul 136-702, republic of korea.

calcium doped nickel ferrite powders have been prepared by sol-gel combustion technique. metal nitrates, such as calcium nitrate, nickel nitrate and ferric nitrate, were used as the source materials and citric acid and polyvinyl alcohol were used as the burning agent and agglomeration reducing agent, respectively. the average crystallite size of the prepared ferrite was in the order of ~70- 92 ...

Nanocrystalline complex oxides have been synthesized by combination of sol–gel auto combustion and ultrasonic irradiation techniques using copper nitrate, zinc nitrate as metallic nitrates and glycine, urea and thiourea as fuels. Sol-gel combustion (combination of the chemical sol–gel process and the combustion process) as a proper synthesized technique is used to synthesize ZnO/CuO nanocomposi...

Nanocrystalline complex oxides have been synthesized by combination of sol–gel auto combustion and ultrasonic irradiation techniques using copper nitrate, zinc nitrate as metallic nitrates and glycine, urea and thiourea as fuels. Sol-gel combustion (combination of the chemical sol–gel process and the combustion process) as a proper synthesized technique is used to synthesize ZnO/CuO nanocomposi...

Journal: :international journal of nano dimension 0
h. bakhtiari department of chemistry, azad university, north tehran branch, tehran, iran. q. s. manuchehri naeini department of chemistry, azad university, north tehran branch, tehran, iran. s. haghighi department of chemistry, azad university, north tehran branch, tehran, iran. m. emamzadeh department of chemistry, azad university, north tehran branch, tehran, iran.

the composite powders of barium-magnesium ferrite were prepared using sol-gel auto-combustion and microwave methods. the crystal structure and the shape of nanocomposites have been compared. x-ray diffraction (xrd), scanning electron microscope (sem) and vibrating sample magnetometer (vsm) were used to investigate the structural, morphological and magnetic properties of nanopowder. the formatio...

Journal: :journal of physical & theoretical chemistry 2010
s. a. khorrami s. a. sepehr s. manie g. mahmoudzadeh s. madani

the dried nitrate-urea gels exhibit the combination of autoicatatric combustion behavior and ultrasonic, whichcan be used to synthesize the nanocatalyst ferrite powders. cu and ni unites nanocatalyst powders sithcomposition of caned], and nife204 were synthesized by a sol-gel auto catalnic combustion process. themolar ratio between metal ions and urea was 11.2. the sob gel process was done at 8...

Journal: :international journal of nano dimension 0
s. khorrami department of chemistry, north tehran branch, islamic azad university, tehran, iran. f. gharib department of chemistry,shahid beheshti university,tehran, iran. g. mahmoudzadeh department of chemistry, north tehran branch, islamic azad university, tehran, iran. s. sadat sepehr department of chemistry, north tehran branch, islamic azad university, tehran, iran. s. sadat madani department of chemistry, north tehran branch, islamic azad university, tehran, iran. n. naderfar department of chemistry, north tehran branch, islamic azad university, tehran, iran. s. manie

sol–gel auto-combustion is a unique combination of the combustion and the chemical gelation processes. in this work, nanosize (d) powders with compositions of znfe2o4 were synthesized by sol–gel combustion method. the puffy, porous brown powders as-combusted was calcined at the temperature of 750–1000◦c for 4 h. these powders are characterized by x-ray diffraction and scanning electron microsco...

Journal: :international journal of nano dimension 0
s. a. khorramie department of chemistry, north tehran branch, islamic azad university, tehran, iran. m. a. baghchesara department of metallurgy & materials engineering, masjed soleyman branch, islamic azad university, masjed soleyman, iran. r. lotfi department of chemistry, north tehran branch, islamic azad university, tehran, iran. sh. moradi dehagi department of chemistry, north tehran branch, islamic azad university, tehran, iran.

nanocrystalline zro2 with particle size of about 38 nm was directly synthesized by sol-gel auto-combustion method. the overall process involved three steps: formation of homogeneous sol at 50-55°c; formation of dried gel at 110°c, and combustion of the dried gel at 400°c. experiments revealed that zro2 dried gel derived from glycine (fuel) and nitrate sol exhibited self propagating combustion a...

M. A. Baghchesara R. Lotfi S. A. Khorramie, Sh. Moradi Dehagi

Nanocrystalline ZrO2 with particle size of about 38 nm was directly synthesized by sol-gel auto-combustion method. The overall process involved three steps: formation of homogeneous sol at 50-55°C; formation of dried gel at 110°C, and combustion of the dried gel at 400°C. Experiments revealed that ZrO2 dried gel derived from glycine (Fuel) and nitrate sol exhibited self pr...

F. Gharib G. Mahmoudzadeh N. Naderfar S. Khorrami, S. Manie S. Sadat Madani S. Sadat Sepehr

Sol–gel auto-combustion is a unique combination of the combustion and the chemical gelation processes. In this work, nanosize (d) powders with compositions of ZnFe2O4 were synthesized by sol–gel combustion method. The puffy, porous brown powders as-combusted was calcined at the temperature of 750–1000◦C for 4 h. These powders are characterized by X-ray diffraction and scanning electron microsco...

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