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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

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S. Khanahmadzadeh & G. Hosseiny. (2016) Synthesis, Characterization, and Thermal Properties of Fe2TiO5/Cellulose and Cellulose Acetate Nanocomposites. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry 46:5, pages 713-717.
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S. Khanahmadzadeh & Sh. Salek. (2014) Fabrication, Thermal, and Magnetic Properties of Fe2TiO5/Polyaniline Nanocomposites. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry 44:5, pages 719-723.
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Articles from other publishers (39)

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Amali Herath, Chanaka Navarathna, Shannon Warren, Felio Perez, Charles U. PittmanJr.Jr. & Todd E. Mlsna. (2022) Iron/titanium oxide-biochar (Fe2TiO5/BC): A versatile adsorbent/photocatalyst for aqueous Cr(VI), Pb2+, F- and methylene blue. Journal of Colloid and Interface Science 614, pages 603-616.
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Thambiliyagodage Charitha, Usgodaarachchi Leshan, Mirihana Shanitha, Wijesekera Ramanee, Lansakara Buddi & Bakker Martin. (2021) Efficient photodegradation activity of α-Fe2O3/Fe2TiO5/TiO2 and Fe2TiO5/TiO2 nanocomposites synthesized from natural ilmenite. Results in Materials 12, pages 100219.
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S. Sulistyowati, A. Irhamsyah, D. Julianitasari, L. Lusiana & S. Pratapa. (2021) Synthesis of Fe2O3 powders from local ironstone with varied distillation routes in producing Fe2TiO5 powders. Materials Today: Proceedings 44, pages 3233-3236.
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Qianqian Zhao, Guo Feng, Feng Jiang, Shanfang Lan, Junhua Chen, Mengting Liu, Zuzhi Huang, Jianmin Liu, Qing Hu & Weihui Jiang. (2020) Comparison of Fe 2 TiO 5 /C photocatalysts synthesized via a nonhydrolytic sol–gel method and solid-state reaction method . RSC Advances 10:71, pages 43762-43772.
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Yagna Prakash Bhoi, Fei Fang, Xian Zhou, Yangyang Li, Xiao Sun, Jia Wang & Weixin Huang. (2020) Single step combustion synthesis of novel Fe2TiO5/α-Fe2O3/TiO2 ternary photocatalyst with combined double type-II cascade charge migration processes and efficient photocatalytic activity. Applied Surface Science 525, pages 146571.
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D.T. França, B.F. Amorim, A.M. de Morais Araújo, M.A. Morales, F. Bohn & S.N. de Medeiros. (2019) Structural and magnetic properties of Fe2TiO5 nanopowders prepared by ball-milling and post annealing. Materials Letters 236, pages 526-529.
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R Fajarin, Widyastuti, M A Baqiya & I Y S Putri. (2017) Effect of Thermal Processes on the Electrical and Optical Properties of Fe 2 TiO 5 Ceramics . IOP Conference Series: Materials Science and Engineering 202, pages 012067.
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Guillaume Seitz, Nicolas Penin, Léa Decoux, Alain Wattiaux, Mathieu Duttine & Manuel Gaudon. (2016) Near the Ferric Pseudobrookite Composition (Fe 2 TiO 5 ) . Inorganic Chemistry 55:5, pages 2499-2507.
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Hossein Beydaghi, Mehran Javanbakht & Elaheh Kowsari. (2016) Preparation and physicochemical performance study of proton exchange membranes based on phenyl sulfonated graphene oxide nanosheets decorated with iron titanate nanoparticles. Polymer 87, pages 26-37.
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Parisa Salarizadeh, Mehran Javanbakht & Saeed Pourmahdian. (2015) Fabrication and physico-chemical properties of iron titanate nanoparticles based sulfonated poly (ether ether ketone) membrane for proton exchange membrane fuel cell application. Solid State Ionics 281, pages 12-20.
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Prince Saurabh Bassi, Sing Yang Chiam, Gurudayal, James BarberLydia Helena Wong. (2014) Hydrothermal Grown Nanoporous Iron Based Titanate, Fe 2 TiO 5 for Light Driven Water Splitting . ACS Applied Materials & Interfaces 6:24, pages 22490-22495.
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Khadijeh Hooshyari, Mehran Javanbakht, Leila Naji & Morteza Enhessari. (2014) Nanocomposite proton exchange membranes based on Nafion containing Fe2TiO5 nanoparticles in water and alcohol environments for PEMFC. Journal of Membrane Science 454, pages 74-81.
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