Maghemite Interparticle Interactions in γ–Fe2O3/Ag nanocomposites

被引:0
|
作者
J. M. Soares
D. S. Chaves
O. L. A. Conceição
A. L. Gurgel
M. M. Xavier
M. A. Morales
E. M. Baggio-Saitovitch
机构
[1] Universidade do Estado do Rio Grande do Norte,Departamento de Física
[2] Universidade Federal Rural do Semi-Árido,Departamento de Ciências Exatas e Naturais
[3] Centro Brasileiro de Pesquisas Físicas,undefined
关键词
Nanoparticles; Maghemite; Superparamagnetic; Magnetic interactions;
D O I
暂无
中图分类号
学科分类号
摘要
Maghemite and silver nanoparticles were prepared using the ionic coordination reaction technique. X-ray diffractograms (XRD) show that all the samples have a high degree of purity. The average particle sizes obtained by XRD and transmission electron microscopy (TEM) vary from 9 to 13 nm for the γ–Fe2O3 particles and from 130 to 142 nm for the Ag particles. The magnetic properties of the samples have been studied by room-temperature DC magnetization and Mössbauer spectroscopy. These measurements indicate the presence of γ–Fe2O3 particles with interparticle interactions of varying strength, resulting in three magnetic regimes: superparamagnetic, superparamagnetic with interactions, and blocked with interactions.
引用
收藏
页码:2467 / 2470
页数:3
相关论文
共 50 条
  • [31] Nanocrystalline maghemite (γ-Fe2O3) in silica by mechanical activation of precursors
    Xue, JM
    Zhou, ZH
    Wang, J
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2002, 85 (04) : 807 - 811
  • [32] Pressure induced phase transformations in nanocrystalline maghemite (γ-Fe2O3)
    Wang, ZW
    Saxena, SK
    SOLID STATE COMMUNICATIONS, 2002, 123 (05) : 195 - 200
  • [33] Enhanced photoelectrochemical water splitting efficiency of hematite (α-Fe2O3)-Based photoelectrode by the introduction of maghemite (γ-Fe2O3) nanoparticles
    Tokubuchi, Tsuyoshi
    Arbi, Ramis Imran
    Pan Zhenhua
    Katayama, Kenji
    Turak, Ayse
    Sohn, Woon Yong
    JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY, 2021, 410
  • [34] Comparative study of the mechanochemical activation of magnetite (Fe3O4) and maghemite (γ-Fe2O3)
    Mitov, I.
    Cherkezova-Zheleva, Z.
    Mitrov, V.
    1997, Akademie Verlag GmbH, Berlin, Germany (161):
  • [35] A facile green approach of Fe2O3, Fe2O3 @Ag, Fe2O3 @AC and Fe2O3 @Ag@AC NPs synthesized via Cocos nucifera L for waste water treatment applications
    Mohan, N. S.
    Gokulkumar, R.
    Shankar, J.
    Sridharan, R.
    Logesh, B.
    Sasikumar, R.
    Vallarasu, K.
    Vijayalakshmi, V.
    RESULTS IN CHEMISTRY, 2022, 4
  • [36] Comparative Analysis Of γ-Fe2O3 Nanoparticles Magnetic Interactions In Different Polymeric Nanocomposites
    Gendler, T. S.
    Novakova, A. A.
    Prudnikov, V. N.
    Aleksandrova, G. P.
    Grishchenko, L. A.
    MAGNETISM AND MAGNETIC MATERIALS, 2009, 152-153 : 269 - +
  • [37] Reaction characteristics of Al/Fe2O3 nanocomposites
    Shin, Moon-Soo
    Kim, Jae-Kyeong
    Kim, Jun-Woo
    Mendes Moraes, Carlos Alberto
    Kim, Hyoun-Soo
    Koo, Kee-Kahb
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2012, 18 (05) : 1768 - 1773
  • [38] Removal of azithromycin from aqueous solutions using Fe2O3/Ag/Zn nanocomposites
    Hosseini, Rasoul
    Keshavarzi, Fatemeh
    Haghnazari, Nahid
    Karami, Changiz
    DESALINATION AND WATER TREATMENT, 2023, 291 : 163 - 169
  • [39] A novel gas sensor based on Ag/Fe2O3 core-shell nanocomposites
    Mirzaei, Ali
    Janghorban, Kamal
    Hashemi, Babak
    Bonyani, Maryam
    Leonardi, Salvatore Gianluca
    Neri, Giovanni
    CERAMICS INTERNATIONAL, 2016, 42 (16) : 18974 - 18982
  • [40] Magnetic study of Fe2O3/ZnO nanocomposites
    Guskos, N.
    Glenis, S.
    Zolnierkiewicz, G.
    Typek, J.
    Sibera, D.
    Kaszewski, J.
    Moszynski, D.
    Lojkowski, W.
    Narkiewicz, U.
    PHYSICA B-CONDENSED MATTER, 2010, 405 (18) : 4054 - 4058