Boroxol ring dissolution in molten and glassy B2O3 by neutron and x-ray diffraction difference methods
Abstract
The structure of 11B2O3 boron oxide glass and its liquid have been measured over a wide temperature range by pulsed neutron diffraction, from T = 14 K up to 1500 K. Contrary to prior neutron scattering results in the literature, thermal expansion of the B–O bond is resolved, with a coefficient of αBO = 4.1(3) ppm K−1, in quantitative agreement with the result previously derived by high-energy x-ray diffraction. Exploiting the scattering contrast between neutrons and x rays, difference functions are derived that eliminate contributions due to O–O pairs, revealing, for the first time, the nearest-neighbor B–B peak in the pair distribution function. This peak occurs at rBB = 2.430(1) Å in B2O3 glass, consistent with a mean B–O–B bond angle β ≃ 124° and a large boroxol ring fraction. In the liquid, a much larger rBB ≃ 2.54 Å and β ≃ 134° are indicative of either a much lower ring fraction f, a larger non-ring B–O–B bond angle, βNR, or a combination of both. The latter scenario is supported by comparison to a range of molecular dynamics models with varying boroxol ring fractions.
Article Details
Journal Info
The Journal of Chemical Physics
American Institute of Physics
Authors (1)
O. L. G. Alderman
ISIS Neutron and Muon Source, Science and Technology Facilities Council, Rutherford Appleton Laboratory, Harwell Campus , Didcot OX11 0QX,