Evgeny Bulanov, Anastasyya Vasileva, Oxana Golitsyna, Alyona Shvareva, Alexander Knyazev
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引用次数: 0
摘要
磷灰石是数量最多的类矿物化合物家族之一,被认为是结合铅离子的基质,对生物圈是危险的。晶体化学(组成、结构)和热物理(热膨胀)是分析这类材料性能的基础。结果表明,Pb5(AIVO4)2(BVIO4)、Pb5(AIVO4)(CVO4)2组成的物质可能是基于磷灰石(AIV = Si, Ge;BVI = S, Cr;CV = P)。DTA和HTXRD实验表明,这类化合物没有多态性,结构有序异常。它们的热物理指标值也相对较低(线性热膨胀系数的变化率为~ 0.02 ~ 0.03?106k -1 / K;体积热膨胀系数为40-70?106 k - 1)。首次得到了Pb5(SiO4)(PO4)2 (a = 9.78782(16) ?, c = 7.31084(16) ?, V = 606.555(23) ?3, R-bragg = 4.694%)和Pb5(GeO4)(PO4)2 (a = 9.87697(12) ?, c = 7.33136(11) ?, V = 619.388(17) ?3, R-bragg = 1.730%)化合物,并进行了鉴定和晶体学表征。
Search for new apatite-like phases for lead utilization based on crystal structure and thermal expansion
Apatites, being one of the most numerous mineral-like families of compounds, are considered as a matrix for binding lead ions, which is dangerous for the biosphere. The crystal-chemical (composition, structure) and thermophysical aspects (thermal expansion) are considered as the basis for analyzing the properties of this kind of material. It is suggested that substances of the composition Pb5(AIVO4)2(BVIO4), Pb5(AIVO4)(CVO4)2 can be a perspective form of lead binding materials based on compounds with the structure of apatite (AIV = Si, Ge; BVI = S, Cr; CV = P). Such compounds, as it was shown by DTA and HTXRD experiments, are distinguished by the absence of polymorphism and abnormal ordering of the structure. Also, they have relatively low values of thermophysical indicators (the rate of change of linear thermal expansion coefficients is ~ 0.02-0.03?106 K-1 per K; values of the volume thermal expansion coefficients are 40-70?106 K-1). Compounds Pb5(SiO4)(PO4)2 (a = 9.78782(16) ?, c = 7.31084(16) ?, V = 606.555(23) ?3, R-bragg = 4.694 %) and Pb5(GeO4)(PO4)2 (a = 9.87697(12) ?, c = 7.33136(11) ?, V = 619.388(17) ?3, R-bragg = 1.730 %) were obtained, identified and crystallographically characterized for the first time.
期刊介绍:
The Journal of the Serbian Chemical Society -JSCS (formerly Glasnik Hemijskog društva Beograd) publishes articles original papers that have not been published previously, from the fields of fundamental and applied chemistry:
Theoretical Chemistry, Organic Chemistry, Biochemistry and Biotechnology, Food Chemistry, Technology and Engineering, Inorganic Chemistry, Polymers, Analytical Chemistry, Physical Chemistry, Spectroscopy, Electrochemistry, Thermodynamics, Chemical Engineering, Textile Engineering, Materials, Ceramics, Metallurgy, Geochemistry, Environmental Chemistry, History of and Education in Chemistry.