Javascript must be enabled to continue!
Influence of Selenium Oxide on Structure and Properties of New Zinc Boroselenite Glasses
View through CrossRef
AbstractThe traditional melt quenching method was used to prepare new zinc boroselenite glasses in the system xSeO2·(50 − x)ZnO·50B2O3 with varying SeO2/ZnO molar ratio. X-ray diffraction patterns (XRD) have revealed an amorphous structure in glasses of up to 40 mol pct SeO2. On the other hand, the presence of sharp diffraction peaks on the XRD spectra of samples containing 40 and 50 mol pct SeO2 confirms a formation of some polycrystalline phases distributed in the host glass network. Based on FTIR and NMR data, the glass structure at a short-range order exhibited a similar value of the fraction of tetrahedral boron (N4), particularly, for both samples of 0 and 5 mol pct SeO2. In this situation, SeO2 is as well as ZnO both played a modifier role. On the other hand, increasing SeO2 on expense of ZnO decreases the N4 fraction gradually. However, in SeO2-rich glass, most of boron atoms are mainly placed in three coordinated sites in BO3 units coordinated with SeO4 groups. Decreasing N4 fraction and increasing crystallization confirmed that SeO2 operates as a glass former and mainly as a crystalline agent. The results based on the TEM of the selected area of electron diffraction patterns (EDP) agree well with the ones obtained by XRD. The diffraction patterns clearly displayed two sets of diffraction rings: one is caused by boroselenite nanocrystals and the other by zinc selenite. In contrast, a broader halo of dispersed structure, known as an amorphous structure, is present in the diffraction pattern obtained from SeO2-free glass.
Springer Science and Business Media LLC
Title: Influence of Selenium Oxide on Structure and Properties of New Zinc Boroselenite Glasses
Description:
AbstractThe traditional melt quenching method was used to prepare new zinc boroselenite glasses in the system xSeO2·(50 − x)ZnO·50B2O3 with varying SeO2/ZnO molar ratio.
X-ray diffraction patterns (XRD) have revealed an amorphous structure in glasses of up to 40 mol pct SeO2.
On the other hand, the presence of sharp diffraction peaks on the XRD spectra of samples containing 40 and 50 mol pct SeO2 confirms a formation of some polycrystalline phases distributed in the host glass network.
Based on FTIR and NMR data, the glass structure at a short-range order exhibited a similar value of the fraction of tetrahedral boron (N4), particularly, for both samples of 0 and 5 mol pct SeO2.
In this situation, SeO2 is as well as ZnO both played a modifier role.
On the other hand, increasing SeO2 on expense of ZnO decreases the N4 fraction gradually.
However, in SeO2-rich glass, most of boron atoms are mainly placed in three coordinated sites in BO3 units coordinated with SeO4 groups.
Decreasing N4 fraction and increasing crystallization confirmed that SeO2 operates as a glass former and mainly as a crystalline agent.
The results based on the TEM of the selected area of electron diffraction patterns (EDP) agree well with the ones obtained by XRD.
The diffraction patterns clearly displayed two sets of diffraction rings: one is caused by boroselenite nanocrystals and the other by zinc selenite.
In contrast, a broader halo of dispersed structure, known as an amorphous structure, is present in the diffraction pattern obtained from SeO2-free glass.
Related Results
A New Method for Calculating Selenium Content and Determining Appropriate Selenium Levels in Foods
A New Method for Calculating Selenium Content and Determining Appropriate Selenium Levels in Foods
Calculating the selenium content per 100 kcal, 100 g or 100 mL, or the reference amount customarily consumed (RACC) of food shows the selenium content of some foods inappropriately...
Evaluation of selenium bioavailability in natural selenium-rich soil by gradient diffusion film technology and chemical extraction method: a case study in Yanqi Basin, Northwest China
Evaluation of selenium bioavailability in natural selenium-rich soil by gradient diffusion film technology and chemical extraction method: a case study in Yanqi Basin, Northwest China
Abstract
Effective selenium is an important indicator for evaluating the supply capacity of selenium to plants in soil. The chemical extraction method and soil solution met...
A New Method for Calculating Zinc Content and Determining Appropriate Zinc Levels in Foods
A New Method for Calculating Zinc Content and Determining Appropriate Zinc Levels in Foods
Calculating the zinc content per 100 kcal, 100 g or 100 mL, or the reference amount customarily consumed (RACC) of food shows the zinc content of some foods inappropriately. So, ma...
Onopordum acaulon
extracts–mediated synthesis of zinc oxide nanoparticles, evaluation of cytotoxicity, and inhibitory potential of microbial biofilm and quorum sensing
Onopordum acaulon
extracts–mediated synthesis of zinc oxide nanoparticles, evaluation of cytotoxicity, and inhibitory potential of microbial biofilm and quorum sensing
Plant extracts are used as cheap and environmentally friendly complexing and stabilizing agents for the green synthesis of nanoparticle with good properties. Zinc oxide nanoparticl...
Distribution of Selenium in Soils and Human Health
Distribution of Selenium in Soils and Human Health
Selenium (Se) is essential as well as a toxic element for humans and animals if it exceeds a certain limit. Soil selenium plays an important role through the food chain. Total sele...
The Response of Hypericum Perfpratum L. to the Application of Selenium and Nano-selenium
The Response of Hypericum Perfpratum L. to the Application of Selenium and Nano-selenium
Abstract
Background: In terms of medicinal and therapeutic properties, H. perforatum is the important species. However, Selenium has been applied as an alleviation strategy...
Hardness Improvement of Chalcogenide Glasses
Hardness Improvement of Chalcogenide Glasses
In and Bi were doped into 30Ge10Sb60Se and 27.5Ge12.5Sb60Se glasses to improve hardness. While Bi did not have any influence on hardness, In made 10% hardness improvement in 27.5Ge...
Diffusion and Ion Conduction in Cation-Conducting Oxide Glasses
Diffusion and Ion Conduction in Cation-Conducting Oxide Glasses
In this Chapter we review knowledge about diffusion and cation conduction in oxide glasses. We first remind the reader in Section 1 of major aspects of the glassy state and recall ...

