4.7 Article

Synthesis, characteristics, and antibacterial activity of a rare-earth samarium/silver/titanium dioxide inorganic nanomaterials

期刊

JOURNAL OF RARE EARTHS
卷 32, 期 8, 页码 727-732

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/S1002-0721(14)60133-2

关键词

inorganic nanomaterials; samarium/silver/titanium dioxide; photocatalytic; antibacterial activities; rare earths

资金

  1. Jiamusi University's Interdisciplinary Research Project [JC2014-005]
  2. Jiamusi University's Graduate Scientific and Technological Innovation Major Project [LZR2014-034]
  3. Jiamusi University Students' Science and Technology Innovation Project [XSXD2004-020]

向作者/读者索取更多资源

An inorganic nanomaterials combination of Sm, Ag, and TiO2 was synthesized using supercritical fluid drying (SCFD) combined with sol-gel techniques. The structure, photocatalysis and bacteriostatic activity of the materials were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XRPS), photocatalytic performance, and antibacterial activity experiments. The XRD results showed that the average particle diameter of Sm/Ag/TiO2 was 14.62 nm and Ag and Sm ions were dispersed on the surface of TiO2 in a highly dispersed, amorphous form. The TEM image showed that the size of the particle was 12 nm using the scherer formula. The XPS result showed that the element Sm was doped and Ag was loaded inorganic nanomaterials successfully. Sm/Ag/TiO2 exhibited optimal photocatalytic properties at 600 degrees C, the photocatalytic optimal proportion of Sm/Ag/TiO2 was 2:2:100. When the molar ratio was 2:2:100, the bacteriostatic circle diameter was 16 mm for Staphylococcus aureus, the minimum bacteriostatic concentration was 200 mu g/mL for white beads coccus, and the minimum bactericidal concentration was 2x10(4) mu g/mL for white beads coccus. The SEM results showed that the antibacterial material attached to the candida albicans cell surface, cells appeared fold deformation. Therefore the inorganic nanomaterials Sm/Ag/TiO2 had high temperature resistance, good photocatalytic and antibacterial characteristics in visible light.

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