Three minerals in the Ca2Fe2-xAlxO5 system (Ca2Fe2O5(C2F), Ca2Fe1·43Alos0·57O5 and Ca2Fe1·28Al0·72O5) are studied by means of a new method in quantum chemistry, the self:consistent charge-discrete variational Xa (SCCDVXa) method. By analysing the energy of their molecular orbits, along with net charge, population and covalent order, we explain the improved hydration activity of Ca2Fe2-xAlxO5 as Al content increases as follows: first, it is easy to accept the lone-pair electrons of water so that the reaction with water can take place because the energy of the lowest unoccupied molecular orbit decreases; second, it is easy to absorb the lone-pair electrons because the net charge of Al is higher than that of Fe; and third, the chemical bonds can be broken easily to bring about a reaction with water because the covalent bond of Al—O is weaker than that of Fe—O.
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April 1996
Research Article|
April 01 1996
An investigation of three minerals in the Ca2Fe2-xAlxO5 system using a new method in quantum chemistry
Cheng Xin;
Shandong Building Materials Institute; Wuhan University of Technology
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Yu Jinghua;
Shandong Building Materials Institute; Wuhan University of Technology
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Feng Xiuji
Shandong Building Materials Institute; Wuhan University of Technology
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Publisher: Emerald Publishing
Online ISSN: 1751-7605
Print ISSN: 0951-7197
© 1996 Thomas Telford Ltd
1996
Advances in Cement Research (1996) 8 (30): 61–66.
Citation
Xin C, Jinghua Y, Xiuji F (1996), "An investigation of three minerals in the Ca2Fe2-xAlxO5 system using a new method in quantum chemistry". Advances in Cement Research, Vol. 8 No. 30 pp. 61–66, doi: https://doi.org/10.1680/adcr.1996.8.30.61
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