The role of hydrogen bonding in the thermal expansion and dehydration of brushite, di-calcium phosphate dihydrate

被引:70
|
作者
Schofield, PF
Knight, KS
van der Houwen, JAM
Valsami-Jones, E
机构
[1] Nat Hist Museum, Dept Mineral, London SW7 5BD, England
[2] Rutherford Appleton Lab, ISIS, Div Sci, Didcot OX11 0QX, Oxon, England
关键词
brushite; thermal expansion; dehydration; neutron powder diffraction; di-calcium phosphate didydrate;
D O I
10.1007/s00269-004-0419-6
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The unit-cell and atomic parameters of perdeuterated brushite have been extracted from Rietveld analysis of neutron powder diffraction data within the temperature range 4.2 to 470 K. The thermal expansion of brushite is anisotropic, with the largest expansion along the b axis due principally to the effect of the O(1)...D(4) and O(3)...D(2) hydrogen bonds. Expansion along the c axis, influenced by the Ow1...D(5) interwater hydrogen bond, is also large. The high temperature limits for the expansion coefficients for the unit-cell edges a, b and c are 9.7(5) x 10(-6), 3.82(9) x 10(-5) and 5.54(5) x 10(-5) K-1, respectively, and for the cell volume it is 9.7(1) x 10(-5) K-1. The beta angle displays oscillatory variation, and empirical data analysis results in alpha(beta) = 1.28(3) x 10(-6) sin(0.0105 T) K-1, within this temperature range. The evolution of the thermal expansion tensor of brushite has been calculated between 50 less than or equal to T less than or equal to 400 K. At 300 K the magnitudes of the principal axes are alpha(11) = 50(6) x 10(-6 K-1), alpha(22) = 26.7(7) x 10(-6) K-1 and alpha(33) = 7.0(5) x 10(-6) K-1. The intermediate axis, alpha(22), is parallel to b, and using IRE convention for the tensor orthonormal basis, the axes alpha(11) and alpha(33) have directions equal to (-0.228, 0, -0.974) and (-0.974, 0, 0.228) respectively. Under the conditions of these experiments, the onset of dehydration occurred at temperatures above 400 K. Bond valence analysis combined with assessments of the thermal evolution of the bonding within brushite suggests that dehydration is precipitated through instabilities in the chemical environment of the second water molecule.
引用
收藏
页码:606 / 624
页数:19
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