Synthesis and properties of magnetic iron oxide/platinum nanocomposites

被引:2
|
作者
Serga, V. [1 ]
Maiorov, M. [2 ]
Kulikova, L. [1 ]
Krumina, A. [1 ]
Karashanova, D. [3 ]
机构
[1] Riga Tech Univ, Inst Inorgan Chem, LV-2169 Salaspils, Latvia
[2] Univ Latvia, Inst Phys, LV-2169 Salaspils, Latvia
[3] Bulgarian Acad Sci, Inst Opt Mat & Technol, BU-1113 Sofia, Bulgaria
来源
12TH RUSSIA/CIS/BALTIC/JAPAN SYMPOSIUM ON FERROELECTRICITY AND 9TH INTERNATIONAL CONFERENCE ON FUNCTIONAL MATERIALS AND NANOTECHNOLOGIES (RCBJSF-2014-FM&NT) | 2015年 / 77卷
关键词
NANOPARTICLES; OXIDATION; CATALYSTS;
D O I
10.1088/1757-899X/77/1/012014
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Iron oxide/platinum nanocomposites have been synthesized by the extractive-pyrolytic method (EPM) involving gradual decomposition of iron capronate and n-trioctylammonium hexachloroplatinate initially produced by solvent extraction. The content of platinum in the composites was 1.2 wt%, 2.4 wt% and 4.8 wt%. Phase composition, morphology and magnetic properties of the produced materials were investigated. XRD analysis and magnetic measurements show that the magnetic phase (magnetite Fe3O4) dominates in a carrier sample produced by the pyrolysis of iron carboxylate, but hematite alpha-Fe2O3 exists there as an admixture. Referring to the TEM results, the produced composites contain ultra-disperse platinum particles on the carrier, and the mean size of these varies from 3 nm to 9 nm.
引用
收藏
页数:5
相关论文
共 50 条
  • [1] Synthesis and magnetic properties of iron oxide-silica aerogel nanocomposites
    van Raap, M. B. Ferridridez
    Sanchez, F. H.
    Leyva, A. G.
    Japas, M. L.
    Cabanillas, E.
    Troiani, H.
    PHYSICA B-CONDENSED MATTER, 2007, 398 (02) : 229 - 234
  • [2] Synthesis, Optical, and Magnetic Properties of Graphene Quantum Dots and Iron Oxide Nanocomposites
    Sajjad, M.
    Makarov, V.
    Sultan, M. S.
    Jadwisienczak, W. M.
    Weiner, B. R.
    Morell, G.
    ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, 2018, 2018
  • [3] Soft solution in situ synthesis of chitosan/iron oxide nanocomposites and their magnetic properties
    Vaewbundit, Sukanda
    Siriphannon, Punnama
    SOFT MATTER, 2021, 17 (25) : 6238 - 6247
  • [4] Synthesis and magnetic properties of gold-iron-gold nanocomposites
    Carpenter, EE
    Kumbhar, A
    Wiemann, JA
    Srikanth, H
    Wiggins, J
    Zhou, WL
    O'Connor, CJ
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2000, 286 (01): : 81 - 86
  • [5] Synthesis, thermal and magnetic behavior of iron oxide-polymer nanocomposites
    Suhasini, A.
    Kumar, K. P. Vinod
    Maiyalagan, T.
    SCIENCE AND ENGINEERING OF COMPOSITE MATERIALS, 2018, 25 (01) : 189 - 195
  • [6] Synthesis and Adsorption of Graphene-Based Iron Oxide Magnetic Nanocomposites
    Zhou Li
    Deng Huiping
    Wan Junli
    Zhang Ruijin
    PROGRESS IN CHEMISTRY, 2013, 25 (01) : 145 - 155
  • [7] Synthesis and magnetic properties of magnetite-silicate nanocomposites derived from iron oxide of bacterial origin
    Hashimoto, Hideki
    Fujii, Tatsuo
    Nakanishi, Makoto
    Kusano, Yoshihiro
    Ikeda, Yasunori
    Takada, Jun
    MATERIALS CHEMISTRY AND PHYSICS, 2012, 136 (2-3) : 1156 - 1161
  • [8] Porous silicon/iron oxide nanocomposites with deposition dependent magnetic properties
    Granitzer, P.
    Rumpf, K.
    Reissner, M.
    Morales, M. P.
    Poelt, P.
    Uusimaeki, T.
    Albu, M.
    SEMICONDUCTORS, METAL OXIDES, AND COMPOSITES: METALLIZATION AND ELECTRODEPOSITION OF THIN FILMS AND NANOSTRUCTURES 2, 2012, 41 (35): : 67 - 72
  • [9] An extensive study on the synthesis of iron based magnetic aluminium oxide nanocomposites by solution combustion method
    Pehlivan, Merve
    Simsek, Sinem
    Ozbek, Sunullah
    Ozbek, Belma
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2019, 8 (02): : 1746 - 1760
  • [10] Synthesis, properties, and applications of magnetic iron oxide nanoparticles
    Teja, Amyn S.
    Koh, Pei-Yoong
    PROGRESS IN CRYSTAL GROWTH AND CHARACTERIZATION OF MATERIALS, 2009, 55 (1-2) : 22 - 45