Synthesis and Characterization of Nanostructured Wires (1D) to Plates (3D) LiV3O8 Combining Sol-Gel and Electrospinning Processes

被引:12
作者
Lee, Kwang-Pill [1 ,2 ]
Manesh, Kalayil Manian [1 ]
Kim, Kyu Soo [1 ]
Gopalan, Anantha Iyengar [1 ,2 ]
机构
[1] Kyungpook Natl Univ, Grad Sch, Dept Chem, Taegu 702701, South Korea
[2] Nano Pract Applicat Ctr, Taegu 704801, South Korea
关键词
Electrospinning; LiV3O8; Fibrous Membranes; Nanostructures; Sol-Gel; CATHODE MATERIAL; LICOO2; CATHODE; NANOFIBERS; COMPOSITE; FIBERS; PERFORMANCE; FABRICATION; IMPROVEMENT; NANOWIRES;
D O I
10.1166/jnn.2009.J079
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Using the combined techniques of sol-gel and electrospinning, nanostructures (wire (1 D) to plates (3D)) of LiV3O8 are prepared with poly vinyl alcohol (PVA) as the template. A precursor gel of LiOH-V2O5 is prepared in alkaline medium Fibrous membranes of PVA with different weight% of LiOH-V2O5 gel Eire prepared by electrospinning and designated as PVA/LiOH-V2O5 composite membrane fibers. The composite fibrous membranes are subjected to calcination at 500 degrees C to obtain different nanostructured LiV3O8. FESEM images of LiV3O8 inform that as the loading % of LiOH-V2O5, gel in the composite membrane increased, the morphology of LiV3O8 changed from fibrous wires (1 D) to plates (3D). FESEM images reveal that the diameters of the composite fibrous membranes, PVA/LiOH-V2O5 are in the range of 80-120 nm. Results from X-ray diffraction and thermal studies clearly confirm the formation of LiV3O8 after calcination of PVA/LiOH-V2O5 composite membrane at 1500 degrees C. It is presumed that this preparation strategy can be extended to obtain nanostructures of other inorganic oxides.
引用
收藏
页码:417 / 422
页数:6
相关论文
共 44 条
[1]  
CHIKAKO N, 1998, FUEL, V77, P321
[2]   Low-temperature synthesized LiV3O8 as a cathode material for rechargeable lithium batteries [J].
Dai, JX ;
Li, SFY ;
Gao, ZQ ;
Siow, KS .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1998, 145 (09) :3057-3062
[3]   STRUCTURAL CHARACTERIZATION OF LI1+XV3O8 INSERTION ELECTRODES BY SINGLE-CRYSTAL X-RAY-DIFFRACTION [J].
DEPICCIOTTO, LA ;
ADENDORFF, KT ;
LILES, DC ;
THACKERAY, MM .
SOLID STATE IONICS, 1993, 62 (3-4) :297-307
[4]   LiCoO2-MgO coaxial fibers:: co-electrospun fabrication, characterization and electrochemical properties [J].
Gu, Yuanxiang ;
Chen, Dairong ;
Jiao, Xiuling ;
Liu, Fangfang .
JOURNAL OF MATERIALS CHEMISTRY, 2007, 17 (18) :1769-1776
[5]   Fabrication of NiCO2O4 nanofibers by electrospinning [J].
Guan, HY ;
Shao, CL ;
Liu, YC ;
Yu, N ;
Yang, XH .
SOLID STATE COMMUNICATIONS, 2004, 131 (02) :107-109
[6]   3-D microbatteries [J].
Hart, RW ;
White, HS ;
Dunn, B ;
Rolison, DR .
ELECTROCHEMISTRY COMMUNICATIONS, 2003, 5 (02) :120-123
[7]   Chemistry and physics in one dimension: Synthesis and properties of nanowires and nanotubes [J].
Hu, JT ;
Odom, TW ;
Lieber, CM .
ACCOUNTS OF CHEMICAL RESEARCH, 1999, 32 (05) :435-445
[8]   The use of carbon nanofiber electrodes prepared by electrospinning for electrochemical supercapacitors [J].
Kim, C ;
Yang, KS ;
Lee, WJ .
ELECTROCHEMICAL AND SOLID STATE LETTERS, 2004, 7 (11) :A397-A399
[9]   Coordination structure of various ligands in crosslinked PVA to silver ions for facilitated olefin transport [J].
Kim, JH ;
Min, BR ;
Lee, KB ;
Won, JG ;
Kang, YS .
CHEMICAL COMMUNICATIONS, 2002, (22) :2732-2733
[10]   The electrochemical properties of thin-film LiCoO2 cathode prepared by sol-gel process [J].
Kim, MK ;
Park, KS ;
Son, JT ;
Kim, JG ;
Chung, HT ;
Kim, HG .
SOLID STATE IONICS, 2002, 152 :267-272