欢迎登录材料期刊网

材料期刊网

高级检索

利用水溶性高聚物PEG作为制备In(OH)3晶体生长的介质,制备了不同形貌和尺寸的 In(OH)3晶体。随着PEG浓度的增加,粒径呈现减小的趋势,且形貌上由不均一的片状渐变形成均一片状。利用SEM、TEM、XRD和傅立叶红外光谱分别对形貌、尺寸、结构和物相等进行了表征和分析。实验结果表明,在600℃条件下焙烧 In(OH)3晶体可以得到轴向尺寸约为30~50 nm 的短片状纳米 In2 O3,其粒子的尺寸较为均一、分散性较好且具有高的纯度。

Nanocrystalline indium hydroxides with the different shape and size were synthesized by using poly-mer PEG as the water-soluble growth medium.The size of indium hydroxides decreased with the increase of PEG concentration,and the morphologies of particles changed from inhomogeneity nanosheets to uniform nanosheets.Nanocrystalline indium oxide nanosheets were obtained upon calcination at the temperature of 600℃ over 3.5 h.The morphology,size and phase structure of indium oxide nanosheets were characterized by scan electron microscopy, transmission electron microscopy, X-ray diffraction and FT-IR spectra. The results showed that the diameters of the as-prepared indium oxide nanosheets were about 30-50 nm length and the as-prepared samples with cube structure were uniform in size,well dispersed and of high purity.

参考文献

[1] Pan Z W;Dai Z K;Wang Z L .Nanobelts of semiconduct-ing oxides[J].SCIENCE,2001,291:1947-1949.
[2] V. N. Singh;B. R. Mehta;Mukesh Kumar .Tunable Growth of Indium Oxide from Nanoflute to Metal-Filled Nanotubes[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2012(9):5450-5455.
[3] 李渊,王文文,张俊英.In_2O_3:W薄膜的制备及光电性能研究[J].功能材料,2011(08):1457-1460.
[4] Li, E;Cheng, ZX;Xu, JQ;Pan, QY;Yu, WJ;Chu, YL .Indium Oxide with Novel Morphology: Synthesis and Application in C2H5OH Gas Sensing[J].Crystal growth & design,2009(5):2146-2151.
[5] Cuiqing Wang;Dairong Chen;Xiuling Jiao .Flower-like In2O3 Nanostructures Derived from Novel Precursor: Synthesis, Characterization, and Formation Mechanism[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2009(18):7714-7718.
[6] LiuX H;Zhou L B;Yi R et al.Single-crystalline indium hydroxide and indium oxide microcubes:synthesis and characterization[J].J Phys Chem C,2008,112:8426-8430.
[7] Du J;Yang M;Seung N C et al.Indium hydroxide and indium oxide nanospheres,nanofiowers,microcubes and nanorods:synthesis and optical properties[J].Crystal growth and design,2008,8:2312-2317.
[8] Wenyan Yin;Jing Su;Minima Cao .In(OH)3 and In2O3 Micro/Nanostructures: Controllable NaOAc-Assisted Microemulsion Synthesis and Raman Properties[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2009(45):19493-19499.
[9] Yang J;Lin CK;Wang ZL;Lin J .In(OH)(3) and In2O3 nanorod bundles and spheres: Microemulsion-mediated hydrothermal synthesis and luminescence properties[J].Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics,2006(22):8973-8979.
[10] Zhang YJ;Lu JJ .A mild and efficient biomimetic synthesis of rodlike hydroxyapatite particles with a high aspect ratio using polyvinylpyrrolidone as capping agent[J].Crystal growth & design,2008(7):2101-2107.
[11] Lyudmila M.Bronstein;Suraj Dixit;John Tomaszewski;Barry Stein;Dmitri I.Svergun .Hybrid Polymer Particles with a Protective Shell: Synthesis,Structure,and Templating[J].Chemistry of Materials: A Publication of the American Chemistry Society,2006(9):2418-2430.
[12] Perez-Maqueda LA.;Matijevic E.;Wang LF. .Nanosize indium hydroxide by peptization of colloidal precipitates[J].Langmuir: The ACS Journal of Surfaces and Colloids,1998(16):4397-4401.
[13] Gurlo A.;Barsan N.;Weimar U.;Ivanovskaya M.;Taurino A.;Siciliano P. .Polycrystalline well-shaped blocks of indium oxide obtained by the sol-gel method and their gas-sensing properties[J].Chemistry of Materials,2003(23):4377-4383.
[14] Yun Shan;Yuming Zhou;Yong Cao .Preparation and infrared emissivity study of collagen-g-PMMA/In_2O_3 nanocomposite[J].Materials Letters,2004(10):1655-1660.
[15] Lee D H;Moss R W;Vuong K D et al.Transparent-conductive indium tin oxide films fabricated by atmos-pheric R.F.plasma deposition technique[J].THIN SOLID FILMS,1996,290-291:6-9.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%