𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Spectroscopic study of biologically active glasses

✍ Scribed by M. Szumera; I. Wacławska; W. Mozgawa; M. Sitarz


Publisher
Elsevier Science
Year
2005
Tongue
English
Weight
192 KB
Volume
744-747
Category
Article
ISSN
0022-2860

No coin nor oath required. For personal study only.

✦ Synopsis


It is known that the chemical activity phenomenon is characteristic for some inorganic glasses and they are able to participate in biological processes of living organisms (plants, animals and human bodies). An example here is the selective removal of silicate-phosphate glass components under the influence of biological solutions, which has been applied in designing glasses acting as ecological fertilizers of controlled release rate of the nutrients for plants.

The structure of model silicate-phosphate glasses containing the different amounts of the glass network formers, i.e. Ca 2C and Mg 2C , as a binding components were studied. These elements besides other are indispensable of the normal growth of plants.

In order to establish the function and position occupied by the particular components in the glass structure, the glasses were examined by FTIR spectroscopy (with spectra decomposition) and XRD methods.

It has been found that the increasing amount of MgO in the structure of silicate-phosphate glasses causes the formation of domains the structure of which changes systematically from a structure of the cristobalite type to a structure corresponding to forsterite type. Whilst the increasing content of CaO in the structure of silicate-phosphate glasses causes the formation of domains the structure of which changes from a structure typical for cristobalite through one similar to the structure of calcium orthophosphate, to a structure corresponding to calcium silicates. The changing character of domains structure is the reason of different chemical activity of glasses.


📜 SIMILAR VOLUMES


Spectroscopic studies of polydiacetylene
✍ S.D.D.V. Rughooputh; D. Phillips; D. Bloor; D.J. Ando 📂 Article 📅 1984 🏛 Elsevier Science 🌐 English ⚖ 526 KB

Absorption, Tluoresccncc excimtion end emission spcc~rs of rr soluble polydi~cctpl~ne.obtllincd by the solid-state polymerization of the bis-(phcnyl xctore) czter of 10,12\_docosadiyne-I. Zl4iol. have been recorded 31 room and liquidnitrogen temperatures for different solvents. Spectral shifts. simi