H2V3O8 nanobelts as a novel stable electrode material with good reversible redox performance

被引:27
作者
Mjejri, I. [1 ]
Etteyeb, N. [1 ]
Sediri, F. [1 ,2 ]
机构
[1] Univ Tunis, Inst Preparatoire Etud Ingn, Lab Chim Matiere Condensee, Tunis, Tunisia
[2] Univ Tunis Elmanar, Facult Sci Tunis, Tunis 2092, Tunisia
关键词
Hydrothermal synthesis; Vanadium oxide; Electrochemical properties; SINGLE-CRYSTAL NANOBELTS; HYDROTHERMAL SYNTHESIS; VANADIUM-OXIDES; THIN-FILMS; OPTICAL-PROPERTIES; V2O5; V3O7-CENTER-DOT-H2O; NANOTUBES; CATHODE; INTERCALATION;
D O I
10.1016/j.jallcom.2014.05.151
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Belt-like nanocrystalline H2V3O8 has been successfully synthesized via a hydrothermal process using vanadium pentoxide as inorganic precursor and 1,4-butanediol as structure-directing template. It is found that the reaction time has a significant effect on the morphology of the product. The as-synthesized H2V3O8 nanobelts are up to several of micrometers in length and about 35 nm in average width. The nanobelts show a large BET surface area which favors the electrochemical properties. The optical properties of the as-synthesized H2V3O8 nanobelts were investigated by UV-visible absorption and photoluminescence. The band gap was found to be 2.75 eV. Electrochemical measurements have revealed reversible redox behavior with doping/dedoping process corresponding to reversible cation intercalation/deintercalation. This process is easier in propylene carbonate than in aqueous solvent and is easier for the small Li+ to the larger Na+ one and to the largest K+ cation. This has been assigned to a probable presence of different tunnel cavities in the orthorhombic H2V3O8 lattice. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:372 / 380
页数:9
相关论文
共 65 条
[1]   Synthesis and electropolymerization of 1,2-bis(thiophen-3-ylmethoxy)benzene and its electrochromic properties and electrochromic device application [J].
Ak, Metin ;
Ak, Mine Sulak ;
Kurtay, Guelbin ;
Gullu, Mustafa ;
Toppare, Levent .
SOLID STATE SCIENCES, 2010, 12 (07) :1199-1204
[2]   PHOTO-LUMINESCENCE AND PHOTO-REDUCTION OF V2O5 SUPPORTED ON POROUS VYCOR GLASS [J].
ANPO, M ;
TANAHASHI, I ;
KUBOKAWA, Y .
JOURNAL OF PHYSICAL CHEMISTRY, 1980, 84 (25) :3440-3443
[3]   Vanadium oxide assisted synthesis of networked silicon oxide nanowires and their growth dependence [J].
Banis, Mohammad Norouzi ;
Zhang, Yong ;
Li, Ruying ;
Sun, Xueliang ;
Jiang, Xinxiang ;
Nikanpour, Darius .
PARTICUOLOGY, 2011, 9 (05) :458-464
[4]   XRD and XPS analysis of laser treated vanadium oxide thin films [J].
Beke, S. ;
Korosi, L. ;
Papp, S. ;
Oszko, A. ;
Nanai, L. .
APPLIED SURFACE SCIENCE, 2009, 255 (24) :9779-9782
[5]   Valence of vanadium in hydrated compounds [J].
Bondarenka, V. ;
Grebinskij, S. ;
Mickevicius, S. ;
Tvardauskas, H. ;
Kaciulis, S. ;
Volkov, V. ;
Zakharova, G. ;
Pasiskevicius, A. .
LITHUANIAN JOURNAL OF PHYSICS, 2007, 47 (03) :333-342
[6]   Synthesis of polyoxovanadates from aqueous solutions [J].
Bouhedja, L ;
Steunou, N ;
Maquet, J ;
Livage, J .
JOURNAL OF SOLID STATE CHEMISTRY, 2001, 162 (02) :315-321
[7]   H2V3O8 single-crystal nanobelts:: Hydrothermal preparation and formation mechanism [J].
Chang, Kuo-Hsin ;
Hu, Chi-Chang .
ACTA MATERIALIA, 2007, 55 (18) :6192-6197
[8]   Synthesis and characterization of H2V3O8 nanorods for electrochemical devices [J].
Channu, V. S. Reddy ;
Holze, Rudolf ;
Rambabu, B. .
CURRENT APPLIED PHYSICS, 2013, 13 (01) :237-240
[9]   Raman spectroscopic study of vanadium oxide nanotubes [J].
Chen, W ;
Mai, LQ ;
Peng, JF ;
Xu, Q ;
Zhu, QY .
JOURNAL OF SOLID STATE CHEMISTRY, 2004, 177 (01) :377-379
[10]   Solvothermal synthesis of V4O9 flake-like morphology and its photocatalytic application in the degradation of methylene blue [J].
Chine, M. K. ;
Sediri, F. ;
Gharbi, N. .
MATERIALS RESEARCH BULLETIN, 2012, 47 (11) :3422-3426