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Tytuł artykułu

Fabrication Fe/Fe3O4/Graphene Nanocomposite Electrode Material for Rechargeable Ni/Fe Batteries in Hybrid Electric Vehicles

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Fe/Fe3O4/Graphene composite electrode material was synthesized by a thermal reduction method and then used as anode material along with Nickel cathode in rechargeable Ni/Fe alkaline batteries in hybrid electric vehicles. Reduced graphene /Fe/Fe3O4 composite electrode material was prepared using a facile three step synthesis involving synthesis of iron oxalate and subsequent reduction of exfoliated graphene oxide and iron oxalate by thermal decomposition method. The synthesis approach presents a promising route for a large-scale production of reduced graphene /Fe/Fe3O4 composite as electrode material for Ni/Fe rechargeable batteries. The particle size and structure of the samples were characterized by SEM and XRD.
Słowa kluczowe
Rocznik
Tom
Strony
15--25
Opis fizyczny
Bibliogr. 18 poz., rys.
Twórcy
autor
  • Department of Chemistry, Chaudhary Devi Lal University, Sisra - 125 055 (Haryana), India
autor
  • Solid State and Structural Chemistry Unit (SSCU), Indian Institute Of Science, Bangalore - 560 012, India
Bibliografia
  • [1] A. K. Shukla, S. Venugopalan, B. Hariprakash, J. Power Sources 100 (2001) 125.
  • [2] P. Periasamy, B. R. Babu, S. V. Iyer, J. Power Sources 62 (1996) 9.
  • [3] C. A. C. Souza, I.A. Carlos, M. Lopes, G.A. Finazzi, M. R. H. de Almeida, J. Power Sources 132 (2004) 288.
  • [4] D. Yamashita, Y. Yamamoto, K. Masuse, H. Yoshida, Nippon Kagaku Kaishi (1978) 525.
  • [5] C. Chakkaravarthy, P. Periasamy, S. Jegannathan, K. I. Vasu, J. Power Sources 35 (1991) 21.
  • [6] A. K. Shukla, M. K. Ravikumar, T. S. Balasubramanian, J. Power Sources 51 (1994) 29.
  • [7] M. K. Ravikumar, T. S. Balasubramanian, A. K. Shukla, J. Power Sources 56 (1995) 209.
  • [8] W. C. He, H. B. Shao, Q. Q. Chen, J. M. Wang, J. Q. Mang, Acta Phys. Chim. Sin. 23 (2007) 1525.
  • [9] K. C. Huang, K. S. Chou, Electrochem. Commun. 9 (2007) 1907.
  • [10] B. T. Hang, M. Eashira, I. Watanabe, S. Okada, J. I. Yamaki, S. H. Yoon, I. Mochida, J. Power Sources 143 (2005) 256.
  • [11] B. T. Hang, H. Hayashi, S. H. Yoon, S. Okada, J. Yamaki, J. Power Sources 178 (2008) 393.
  • [12] B. T. Hang, T. Watanabe, M. Eashira, S. Okada, J. Yamaki, S. Hata, S. H. Yoon, I. Mochida, J. Power Sources 150 (2005) 261.
  • [13] B. T. Hang, T. Watanabe, M. Eashira, I. Watanabe, S. Okada, J. Yamaki, Electrochem. Solid State Lett. 8 (2005) A 476.
  • [14] K. Ujimine, A. Tsutsumi, J. Power Sources 160 (2006) 1431.
  • [15] Chen-Yu Kao, Kan-Sen Chou, J. Power Sources 195 (2010) 2399-2404.
  • [16] Kuo-Cheng Huang, Kan-Sen Chou, Electrochemistry Communications 9 (2007) 1907-1912.
  • [17] A. K. Shukla, S. Venugopalan, B. Hariprakash, J. Power Sources 100 (2001) 125-148.
  • [18] W. Sienicki, M. Wojtewicz, International Letters of Chemistry, Physics and Astronomy 4 (2012) 76-81.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-12e8db87-ee1a-47ad-8361-60e8ec66b695
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