Diboron trioxide (B2O3) assumes critical importance as an effective oxidation inhibitor in prominent chemical applications. For instance, it has been extensively used in electrolysis and ceramic/glass technology. Results are presented of accurate quantum mechanical calculations using the PW1PW hybrid HF/DFT functional of four low-index surfaces of the low-pressure phase of B2O3: (101), (100), (011), and (001). Bond lengths, bond angles, and net Mulliken charges of the surface atoms are analyzed in detail. Total and projected density of states as well as surface energies are discussed. The occurrence of tetrahedral BO4 units on the lowest energy structures of two of these surfaces has been demonstrated for the first time. The corresponding s...
The potential surface for the boron(II1) oxide (B,O,) ground state has been calculated in restricted...
International audienceThe cohesive energies and structural properties of recently predicted, and nev...
α- Bi2 O3 is the thermodynamically stable phase of Bi2 O3 at room temperature. We have performed a t...
Diboron trioxide (B<sub>2</sub>O<sub>3</sub>) assumes critical importance as an effective oxidation ...
Diboron trioxide (B2O 3) assumes critical importance as an effective oxidation inhibitor in prominen...
The thesis is composed of two broad themed sections with the underlying aim of understanding on a pr...
Ab initio self-consistent-field (SCF) molecular orbital (MO) theory has been used to calculate energ...
International audienceThe structural properties of glassy diboron trioxide, g-B2O3 , are investigate...
There is a long standing controversy concerning the structure of vitreous B2O3. Some experiments hav...
This paper is part of an ongoing effort aimed at modeling the srtucture of liquid and vitreous B2O3 ...
We present a combined photoelectron spectroscopy and first-principles theory study on the structural...
Using first-principles calculations, we study pressure effects in B2O3 glass up to 600 GPa and perfo...
Diboron trioxide is of interest because of its unique unreactive functionality properties. In this w...
This research received funding from the Latvian-Ukraine cooperation Project No. LV/UA-2021/5. The In...
International audienceUsing first-principles calculations, we study pressure effects in B2O3 glass u...
The potential surface for the boron(II1) oxide (B,O,) ground state has been calculated in restricted...
International audienceThe cohesive energies and structural properties of recently predicted, and nev...
α- Bi2 O3 is the thermodynamically stable phase of Bi2 O3 at room temperature. We have performed a t...
Diboron trioxide (B<sub>2</sub>O<sub>3</sub>) assumes critical importance as an effective oxidation ...
Diboron trioxide (B2O 3) assumes critical importance as an effective oxidation inhibitor in prominen...
The thesis is composed of two broad themed sections with the underlying aim of understanding on a pr...
Ab initio self-consistent-field (SCF) molecular orbital (MO) theory has been used to calculate energ...
International audienceThe structural properties of glassy diboron trioxide, g-B2O3 , are investigate...
There is a long standing controversy concerning the structure of vitreous B2O3. Some experiments hav...
This paper is part of an ongoing effort aimed at modeling the srtucture of liquid and vitreous B2O3 ...
We present a combined photoelectron spectroscopy and first-principles theory study on the structural...
Using first-principles calculations, we study pressure effects in B2O3 glass up to 600 GPa and perfo...
Diboron trioxide is of interest because of its unique unreactive functionality properties. In this w...
This research received funding from the Latvian-Ukraine cooperation Project No. LV/UA-2021/5. The In...
International audienceUsing first-principles calculations, we study pressure effects in B2O3 glass u...
The potential surface for the boron(II1) oxide (B,O,) ground state has been calculated in restricted...
International audienceThe cohesive energies and structural properties of recently predicted, and nev...
α- Bi2 O3 is the thermodynamically stable phase of Bi2 O3 at room temperature. We have performed a t...