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  • Archive: 2009
05 May 2009
  • 2009
  • V. 8
  • 2
  • (p.146 - 150)

Biocompatible materials based on synthetic apatites co-doped with silver and lutetium ions

Authors:

Zinchenko, V.; Neciporenko, A.; Stoyanova, I.

Summary:

Apatite based (CaHap and CaFap) materials were synthesized by saline–melt method at moderate temperature. Their structure and composition have been studied by X-ray phase analysis (XRPA) and IR spectroscopy of diffuse reflectance. The specimens of materials were identified as partially substituted (OH- by Cl - and F- by OH- in CaHap and CaFap, respectively) compounds. Annealing of apatite based materials in Ag - and Lu3 - containing solutions resulted in sorption of the above mentioned ions, which was suggested by XRPA, electron spectroscopy of diffuse reflectance, and chemical analysis.

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identified as partially substituted (OH-
  by Cl
-
  and F-
  by OH-
  in CaHap and CaFap, respectively) compounds. Annealing of apatite based materials in Ag 

- and Lu3 
 - containing solutions resulted in sorption of the above mentioned ions, which was suggested by XRPA, 
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BibTeX

@article{ibn_4043,
author = {Zinchenko, V. and Neciporenko, A.V. and Stoyanova, I.},
title = {Biocompatible materials based on synthetic apatites co-doped with silver and lutetium ions},
journal = {Moldavian Journal of the Physical Sciences},
year = {2009},
volume = {8 (2)},
pages = {146-150},
month = {May},
abstract = {(EN) Apatite based (CaHap and CaFap) materials were synthesized by saline–melt method at 

moderate temperature. Their structure and composition have been studied by X-ray phase 
analysis (XRPA) and IR spectroscopy of diffuse reflectance. The specimens of materials were 
identified as partially substituted (OH-
  by Cl
-
  and F-
  by OH-
  in CaHap and CaFap, respectively) compounds. Annealing of apatite based materials in Ag 

- and Lu3 
 - containing solutions resulted in sorption of the above mentioned ions, which was suggested by XRPA, 
electron spectroscopy of diffuse reflectance, and chemical analysis.  
},
url = {https://ibn.idsi.md/vizualizare_articol/4043},
}

DataCite

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<description xml:lang='en' descriptionType='Abstract'>Apatite based (CaHap and CaFap) materials were synthesized by saline–melt method at 

moderate temperature. Their structure and composition have been studied by X-ray phase 
analysis (XRPA) and IR spectroscopy of diffuse reflectance. The specimens of materials were 
identified as partially substituted (OH-
  by Cl
-
  and F-
  by OH-
  in CaHap and CaFap, respectively) compounds. Annealing of apatite based materials in Ag 

- and Lu3 
 - containing solutions resulted in sorption of the above mentioned ions, which was suggested by XRPA, 
electron spectroscopy of diffuse reflectance, and chemical analysis.  
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Dublin Core

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<dc:creator>Zinchenko, V.</dc:creator>
<dc:creator>Neciporenko, A.V.</dc:creator>
<dc:creator>Stoyanova, I.</dc:creator>
<dc:date>2009-05-05</dc:date>
<dc:description xml:lang='en'>Apatite based (CaHap and CaFap) materials were synthesized by saline–melt method at 

moderate temperature. Their structure and composition have been studied by X-ray phase 
analysis (XRPA) and IR spectroscopy of diffuse reflectance. The specimens of materials were 
identified as partially substituted (OH-
  by Cl
-
  and F-
  by OH-
  in CaHap and CaFap, respectively) compounds. Annealing of apatite based materials in Ag 

- and Lu3 
 - containing solutions resulted in sorption of the above mentioned ions, which was suggested by XRPA, 
electron spectroscopy of diffuse reflectance, and chemical analysis.  
</dc:description>
<dc:source>Moldavian Journal of the Physical Sciences 8 (2) 146-150</dc:source>
<dc:title>Biocompatible materials based on synthetic apatites co-doped with silver and lutetium ions</dc:title>
<dc:type>info:eu-repo/semantics/article</dc:type>
</oai_dc:dc> (0,005ppm). Whereas in samples from the same sources after water treatment the total content of DBP and DEHP varied in the range 0,005&ndash;0,030ppm, indicating the possibility contamination by phthalates, due to contact with the various plastics, rubber, filler material, etc. during water treatment [1]. The retention of phthalates in soil is influenced by many factors: soil properties, types and number of microorganisms, etc. The data obtained for agricultural soils of Moldova central region confirm the soil contamination by phthalates. DBP content in the soil (agricultural land, vineyards) was till 0,279ppm, DEHP in some cases reached till 0,925ppm. While the phthalates concentration in soil samples and water sources from the Chisinau city was less than LD. Taking into account the active process of biodegradation of phthalates molecules by soil bacteria [2], one might assume that the main sources of pollution Moldova environment by phthalates are the processes, associated with agricultural work. It would be desirable that farmers make an assessment of their risk conditions for implementing solutions for prevention pollution.</p></dc:description>
<dc:source>Ecological and environmental chemistry 2017 () 57-57</dc:source>
<dc:title><p>Pollution of the food chain and environment by phthalates from polymers materials</p></dc:title>
<dc:type>info:eu-repo/semantics/article</dc:type>
</oai_dc:dc>

        

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ZINCHENKO, V.; NECIPORENKO, A.; STOYANOVA, I.. Biocompatible materials based on synthetic apatites co-doped with silver and lutetium ions. In: Moldavian Journal of the Physical Sciences. 2009, nr. 2(8), pp. 146-150. ISSN 1810-648X.

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