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首页> 外文期刊>The American mineralogist >Solid solution in the fluorapatite-chlorapatite binary system: High-precision crystal structure refinements of synthetic F-Cl apatite
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Solid solution in the fluorapatite-chlorapatite binary system: High-precision crystal structure refinements of synthetic F-Cl apatite

机译:氟磷灰石-氯磷灰石二元体系中的固溶体:合成F-Cl磷灰石的高精度晶体结构细化

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摘要

Apatite sensu lato, Ca_(10)(PO_4)_6(F,OH,Cl)_2, is the tenth most abundant mineral on Earth, and is fundamentally important in geological processes, biological processes, medicine, dentistry, agriculture, environmental remediation, and material science. The steric interactions among anions in the [0,0,z] anion column in apatite make it impossible to predict the column anion arrangements in solid solutions among the three end-members. In this work we report the measured atomic arrangements of synthetic apatite in the F-Cl apatite binary with nominal composition Ca_(10)(PO_4)_6(F_1Cl_1), synthesized in vacuum at high temperature to minimize both hydroxyl- and oxy-component of the apatite. Four crystals from the high-temperature synthesis batch were prepared to assess the homogeneity of the batch and the precision of the location of small portions of an atom in the apatite anion column by single-crystal X?ray diffraction techniques. Crystals were ground to spheres of 80 μm diameter, and full-spheres of MoKα diffraction data were collected to θ = 33°, with average redundancies >16. Final R1 values ranged from 0.0145 to 0.0158; the lattice parameters ranged from a = 9.5084(2)-9.5104(3), c = 6.8289(3)-6.8311(2) ?. Based on this study, solid solution in P6_3/m apatites along the F-Cl join is attained by creation of an off-mirror fluorine site at (0,0,0.167), a position wherein the fluorine atom relaxes away from its normal position within the {00l} mirror plane in P6_3/m apatites; that relaxation is coupled with relaxation of a chlorine atom at the adjacent mirror plane away from the off-mirror fluorine, allowing acceptable F-Cl distances in the anion column. There are a total of four partially occupied anion positions in the anion column, including two for fluorine [(0,0,1/4) and (0,0,0.167)] and two for chlorine [(0,0,0.086) and (0,0,0)]; the chlorine site at the origin was previously postulated but not observed in calcium apatite solid solutions.
机译:磷灰石Ca_(10)(PO_4)_6(F,OH,Cl)_2是地球上第十大最丰富的矿物质,在地质过程,生物过程,医学,牙科,农业,环境修复,和材料科学。磷灰石中[0,0,z]阴离子柱中阴离子之间的空间相互作用使得无法预测固溶体中三个末端成员之间的柱阴离子排列。在这项工作中,我们报告了F-Cl磷灰石二元体中标称组成为Ca_(10)(PO_4)_6(F_1Cl_1)的合成磷灰石的测量原子排列,该成分在高温下真空合成以最大程度地减少了羟基磷灰石中羟基和氧的含量磷灰石。制备了来自高温合成批料的四个晶体,以通过单晶X射线衍射技术评估批料的均质性和磷灰石阴离子柱中小部分原子的定位精度。将晶体研磨至直径为80μm的球体,并收集全球的MoKα衍射数据至θ= 33°,平均冗余度> 16。最终R1值范围为0.0145至0.0158;晶格参数的范围为a = 9.5084(2)-9.5104(3),c = 6.8289(3)-6.8311(2)?。根据这项研究,通过在(0,0,0.167)处创建镜外氟位点,可以实现沿F-Cl连接的P6_3 / m磷灰石的固溶体,该位置的氟原子从其正常位置弛豫在P6_3 / m磷灰石的{00l}镜平面内;弛豫与邻近镜平面上的氯原子远离镜外氟的弛豫相关,从而允许阴离子柱中的F-Cl距离可接受。阴离子塔中共有四个部分占据的阴离子位置,其中两个用于氟[(0,0,1 / 4)和(0,0,0.167)],另外两个用于氯[[0,0,0.086)和(0,0,0)];先前假定起源处的氯位置,但在磷灰石钙固溶体中未观察到。

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