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The lanthanum carbide alloy was induction melted in vacuum induction melting furnace from lanthanum and graphite with the mass ratio of 89:11. Lanthanum hydroxide (La(OH)3) nanopowders were prepared by a simple hydrolysis of lanthanum carbide at room temperature under normal atmospheric pressure without any surfactant. X-ray diffraction (XRD) showed that the nanoparticles were with a hexagonal structure. The effect factors such as reaction time, reaction temperature and the mass ratio of lanthanum carbide powders to H2O on BET surface area of the obtained nanopowders were investigated. Furthermore, transmission electron microscopy (TEM) and high-resolution transmission electron microscopy (HRTEM) showed that nanopowders behaved the morphology of short nanorod. The longitudinal growth direction of the nanorod had an angle of about 14° with the (101) lattice plane and the lateral growth direction had an angle of about 35° with the (200) lattice plane. The mechanism of formation of nanorod was discussed on the basis of the experimental results.

参考文献

[1] Yang L X;Liang Y;Chen H;Meng Y M Jiang W .Controlled synthesis of Mn3O4 and MnCO3 in a solvothermal system[J].Materials Research Bulletin,2009,44:1753.
[2] Xun Wang;Yadong Li .Solution-based routes to transition-metal oxide one-dimensional nanostructures[J].Pure and Applied Chemistry,2006(1):45-64.
[3] Sampath S;Kulkami N K;Subramanian M S;Jayadevan N C .Effect of lanthanum,neodymium,thorium,uranium,and plutonium compounds on graphite oxidation[J].CARBO,1988,26(02):129.
[4] Barnard K R;Foger K;Tumey T W;Williams R D .Lanthanum cobalt oxide oxidation catalysts derived from mixed hydroxide precursors[J].Journal of Catalysis,1990,125(02):265.
[5] Rosynek M P;Magnuson D T .Preparation and characterization of catalytic lanthanum oxide[J].Journal of Catalysis,1977,46(03):402.
[6] Dakhel AA .Structural and ac electrical properties of oxidised La and La-Mn thin films grown on Si substrates[J].Materials Chemistry and Physics,2007(2/3):266-270.
[7] Xiangyang Ma;Hui Zhang;Yujie Ji .Synthesis of ultrafine lanthanum hydroxide nanorods by a simple hydrothermal process[J].Materials Letters,2004(7/8):1180-1182.
[8] Jinming Kuang;Jinying Yuan;Mi Zhou;Weizhong Yuan;Xiaofeng Sui;Zhaolong Li .Grafting of PEG onto lanthanum hydroxide nanowires[J].Materials Letters,2008(25):4078-4080.
[9] Ozawa M;Onoe R;Kato H J .Formation and decomposition of some rare earth (RE=La,Ce,Pr) hydroxides and oxides by homogeneous precipitation[J].Journal of Alloys and Compounds,2006,408:556.
[10] Mazloumi M;Shacheraghi N;Kajbafvala A;Zanganeh S Lak A Mohajerani M S Sadrnezhaad S K .3D bundles of self-as-sembled lanthanum hydroxide nanorods via a rapid microwave-assisted route[J].Journal of Alloys and Compounds,2009,473(1-2):283.
[11] Ding Y Y;Hu Y;Gui Z;Song L .Preparation of poly (methylmethacrylate)/lanthanum hydroxide nanowire nanocomposites with improvement in thermal stability[J].Materials Letters,2008,62:4290.
[12] Ni J S;Ding W Z .A method to produce Mn3O4 by manganese carbide alloy[P].Chinese Patent.China:CN 2008 10203968.9,2011.
[13] Hou B;Xu Y;Wu D;Sun Y H .Synthesis and characterization of ultralong lanthanum hydroxide nanorods via solvothennal method[J].Journal of Materials Science,2007,42(04):1397.
[14] ZHONGWU WANG;LUKE L.DAEMEN;YUSHENG ZHAO;C.S.ZHA;ROBERT I DOWNS .Morphology-tuned wurtzite-type ZnS nanobelts[J].Nature materials,2005(12):922-927.
[15] Djerdj I;Garnweitner G;Su DS;Niederberger M .Morphology-controlled nonaqueous synthesis of anisotropic lanthanum hydroxide nanoparticles[J].International Journal of Quantum Chemistry,2007(7):2154-2165.
[16] Peng ZA.;Peng XG. .Nearly monodisperse and shape-controlled CdSe nanocrystals via alternative routes: Nucleation and growth[J].Journal of the American Chemical Society,2002(13):3343-3353.
[17] Xun Wang;Yadong Li .Synthesis and characterization of lanthanide hydroxide single-crystal nanowires[J].Angewandte Chemie International Edition,2002(24):4790-4793.
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