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Original Articles

Structural, optical and magnetic properties of the Fe2TiO5 nanopowders

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Pages 167-176 | Received 16 Feb 2011, Accepted 10 Dec 2011, Published online: 18 May 2012

References

  • Taylor , R W . 1964 . Phase equilibria in the system FeO–Fe2O3–TiO2, at 1300°C . Am. Mineral. , 49 : 1016 – 1030 .
  • Seiyama , T . 1978 . Metal Oxides and Their Catalytic Actions , Tokyo : Kodansha Scientific Books .
  • Wachs , I E . 2005 . Recent conceptual advances in the catalysis science of mixed metal oxide catalytic materials . Catal. Today , 100 : 79 – 94 .
  • Wachs , I E and Segawa , K . 1992 . “ Supported metal oxides ” . In Characterization of Catalytic Materials , Edited by: Wachs , IE . 69 – 88 . Boston , MA : Butterworth-Heinemann .
  • Fades , B D , Zelinski , B J and Uhlmann , D R . 1993 . “ Sol-gel derived ceramic coatings ” . In Ceramic Films and Coatings , Edited by: Watchmann , J and Haber , JRA . 224 – 283 . Park Ridge , NJ : Noyes Publications .
  • Dislich , H . 1993 . “ Thin films from the sol-gel process ” . In Sol–gel Technology for Thin Films, Fibers, Performs, Electronics, and Speciality Shapes , Edited by: Klein , LC . 50 – 79 . Park Ridge , NJ : Noyes Publications .
  • Pettit , R B , Ashley , C S , Readand , S T and Brinker , C J . 1993 . “ Antireflective films from the sol-gel process ” . In Sol–gel Technology for Thin Films Fibers Performs Electronics and Speciality Shapes , Edited by: Klein , LC . 80 Park Ridge , NJ : Noyes Publications .
  • Bein , T , Brown , K , Fye , G C and Brinker , C J . 1989 . Molecular sieve sensors for selective detection at the nanogram level . J. Am. Cer. Soc. , 111 : 7640 – 7641 .
  • Yan , Y and Bein , T . 1994 . “ Design of thin films with nanometer porosity for molecular recognition ” . In Interfacial Design and Chemical Sensing , Edited by: Mallouk , TE and Harrison , DJ . 16 – 26 . Washington , DC : American Chemical Society .
  • Randhawa , B S , Kaur , S and Bassi , P S . 2000 . Calcium ferrite formation from the thermolysis of calcium tris (maleato) ferrate(III) . Bull. Mater. Sci. , 23 : 305 – 307 .
  • Dong , L , Liu , Z , Hu , Y , Xu , B and Chen , Y . 1998 . Dispersion and reduction behavior of CuO/α-Fe2O3 systems . J. Chem. Soc. Faraday Trans. , 94 : 3033 – 3038 .
  • Khedr , M H , Omar , A A and Abdel-Moaty , S A . 2006 . Magnetic nanocomposites: Preparation and characterization of Co-ferrite nanoparticles . Colloids Surf A Physicochem. Eng. Aspects , 281 : 8 – 14 .
  • Lahiri , P and Sengupta , S . 1995 . Physico-chemical properties and catalytic activities of the spinel series MnxFe3–xO4 towards peroxide decomposition . J. Chem. Soc. Faraday Trans. , 91 : 3489 – 3494 .
  • Singh , N K , Tiwari , S K , Anitha , F KI and Singh , R N . 1996 . Synthesis of (La, Sr)CoO3 perovskite films through a sol–gel route and their physicochemical and electrolysis . J. Chem. Soc. Faraday Trans. , 92 : 2397 – 2400 .
  • Khedr , M H , Omar , A A , Nasr , M I and Sedeek , E K . 2006 . Effect of firing temperature on microstructure and magnetic properties of nanocrystalline Ni0.5Zn0.5Fe2O4 prepared by wet and dry methods . J. Anal. Appl. Pyrolysis , 76 : 203 – 208 .
  • Ramoukatty , C G and Sugunan , S . 2001 . Surface properties and catalytic activity of ferrospinels of nickel, cobalt and copper, prepared by soft chemical methods . J. Appl. Catal. A Gen. , 218 : 39 – 51 .
  • Jebarthinan , N J and Krishnaswamy , V . 1995 . “ Catalysts ” . In Catalysis – Present and Future , Edited by: Kanta Rao , P , Tagore , S and Benwal , BS . 228 New Delhi : Wiley .
  • Radwan , N RE and El-Shobaky , H G . 2000 . Solid–solid interactions between ferric and cobalt oxides as influenced by Al2O3-doping . Thermochim. Acta , 360 : 147 – 156 .
  • El-Shobaky , G A , Radwan , N RE and Radwan , E M . 2001 . Investigation of solid–solid interactions between pure and LiO2 doped magnesium and ferric oxide . Thermochim. Acta , 380 : 27 – 35 .
  • Bujoreanu , V M and Segal , E . 2000 . On the kinetics of manganese ferrite formation from aqueous solution of MnO2 and FeSO4·7H2O . J. Therm. Anal. Calorim. , 61 : 967 – 977 .
  • Enhessari , M , Kargar-Razi , M , Moarefi , P and Parviz , A . Synthesis, Characterization and photocatalytic properties of MnTiO3-Zeolite-Y nanocomposites, J. Nanostruct. 1 (2012), pp. 119–125
  • Ishikawa , Y . 1957 . Magnetic properties of the FeTiO3–Fe2O3 solid solution series . J. Phys. Soc. Jpn. , 12 ( 10 ) : 1083 – 1098 .
  • Rao , C NR and Gopalakrishnan , J . 1997 . New Directions in Solid State Chemistry , 2nd , 1 – 535 . UK : Cambridge University Press .
  • Segal , D . 1997 . Chemical synthesis of ceramic materials . J. Mater. Chem. , 7 : 1297 – 1305 .
  • Yoshimura , M and Livage , J . (Guest eds.), Soft processing for advanced inorganic materials, MRS Bull. 25 (2000), pp. 12–13
  • Hubert-Pfalzgraf , L G . 2004 . To what extent can design of molecular precursors control the preparation of high tech oxides . J. Mater. Chem. , 14 : 3113 – 3123 .
  • Kesler , V G . 2003 . Molecular structure design and synthetic approaches to the heterometallic alkoxide complexes (soft chemistry approach to inorganic materials by the eyes of a crystallographer) . Chem. Commun. , 1 : 1213 – 1222 .
  • Khaleel , A . 2009 . Sol–gel synthesis, characterization, and catalytic activity of Fe(III) titanates . Colloids Surf. A Physicochem. Eng. Aspects , 346 : 130 – 137 .
  • Kozuka , H and Kajimura , M . 2001 . Sol–gel preparation and hotoelectrochemical properties of Fe2TiO5 thin films . JSST , 22 : 125 – 132 .
  • Dislich , H and Glaswerke , S . 1986 . Sol-gel: Science, processes and products . J. Non-Crystalline Solids , 80 : 115 – 1210 .
  • Guinier , A . 1957 . Théorie ET technique de la radiocristallographie, éd dunod . Acta Cryst. , 10 : 386 – 387 .
  • Ungár , T . 2007 . Characterization of nanocrystalline materials by X-ray line profile analysis . J. Mater. Sci. , 42 : 1584 – 1593 .
  • Li , L , Pan , Y , Chen , L and Li , G . 2007 . One-dimensional α-MnO2: Trapping chemistry of tunnel structures, structural stability, and magnetic transitions . J. Solid State Chem. , 180 : 2896 – 2904 .
  • Hanel , D and Sevek , F . 1984 . Characterization of monoclinic Fe2TiO5 by Mössbauer spectroscopy and magnetic susceptibility . Mater. Res. Bull. , 19 : 35 – 39 .
  • Roberts , A P , Cui , Y and Verosub , K L . 1995 . L Wasp-waisted hysteresis loops: Mineral magnetic characteristics and discrimination of components in mixed magnetic systems . J. Geophys. Res. , 100 : 17909 – 17924 .
  • Wang , T , Jiang , X and Cong Huang , H C . 2010 . Influence of different preparation methods on crystallization and morphology of Fe2O3 nanoparticles . Micro Nano Lett. , 5 : 196 – 199 .
  • Enhessari , M , Parviz , A , Ozaee , K and Karamali , E . 2010 . Magnetic properties and heat capacity of CoTiO3 nanopowders prepared by stearic acid gel method . J. Exp. Nanosci. , 5 : 61 – 68 .
  • Enhessari , M , Parviz , A , Karamali , E and Ozaee , K . 2010 . Synthesis, characterisation and optical properties of MnTiO3 nanopowders . J. Exp. Nanosci. , DOI: 10.1080/17458080.2010.529173 (in press)
  • Prasad , N V , Srinivas , K , Kumar , G S and James , A R . 2001 . Impedance measurements on TiO2–Fe2O3 thin films . Appl. Phys. A Mater. Sci. Process , 72 : 341 – 345 .
  • Lang , S B . 1974 . Sourcebook of Pyroelectricity , London, New York : Gordon and Breach Science Publishers .
  • Yan , K R . Piezo-pyroelectric energy converter and method, Kucherov R. Yan (United States), inventors, Thermodyne Technologies, (United States), Canadian Patent, A 223877130508, 1997
  • Khan , W S and Cao , C . 2010 . Synthesis, growth mechanism and optical characterization of zinc nitride hollow structures . J. Cryst. Growth , 312 : 1838 – 1843 .

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