3.8 Proceedings Paper

Preparation and Luminescent Properties of the antibacterial materials of the La3+ Doped Sm3+ -Hydroxyapatite

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1742-6596/986/1/012010

Keywords

Hydroxyapatite; Nano-lanthanum samarium complex; Luminescence; Biological antibacterial agent

Funding

  1. National Science Foundation of China [21346006]
  2. Department of scientific research project in Heilongjiang province [B2017015]
  3. Scientific research project of Heilongjiang province education department [12541783]
  4. National project training project of Jiamusi University [JMSUJCGP 2016-003]
  5. Principal innovation and entrepreneurship fund project of Jiamusi University [xzyf 2014-18]
  6. Scientific research project of Jiamusi University [JMSUJCMS2016-013]
  7. Key Laboratory of Photochemistry, Institute of Chemistry, Chinese Academy of Sciences
  8. Key Laboratory of Luminescence and Optical Information, Beijing Jiaotong University

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In this paper, the La3+-doped Sm3+ hydroxyapatite (La/Sm/HAP) complexes were prepared by a precipitation method. The sample was defined by IR spectra, fluorescence spectra and X ray diffraction analysis et al. The structure of complexes were discussed. The emission wavelength of heat treatment of Sm3+ do not change, but will affect the intensity of the peak Sm3+ luminescence properties and the occupy hydroxyapatite in the lattice Ca(II) and Ca(I) loci with Sm3+ doped concentration and the proportion of the sintering temperature change and change: The nano hydroxyapatite complex of the La3+ doped samarium obtain the good fluorescence intensity, by La3+ doping content of Sm3+ were hydroxyapatite 6% (La3+, Sm3+ mole ratio) device. The complex of La3+ doped samarium HAP have Stable chemical property, fluorescence property and excellent biological activity. The ligand HAP absorbs energy or captures an electron-hole pair and then transfers it to the lanthanide ions. The catalytic activity influence of the La3+-doped Sm3+ hydroxyapatite was discussed, the La/Sm/HAP had excellent antibacterial property, which used as potential biological antibacterial material..

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