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首页> 外文期刊>International Journal of Quantum Chemistry >First principle investigation of the thermomechanical properties of type A carbonated apatite
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First principle investigation of the thermomechanical properties of type A carbonated apatite

机译:碳酸磷酸盐型热机械性能的第一原理研究

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Calcium apatites with the general chemical formula (Ca, X)(10)(PO4, Y)(6)Z(2) represent a mineral family of utmost importance in several fields, for example, bone biology, biomaterials, and mineralogy. However, few works have focused on the mechanical properties of these phases, and in particular, no data are available on the thermomechanical and thermodynamic properties of carbonate-bearing (hydroxyl)apatites. In the present work, the equation of state of type A carbonated apatite (CAp, Ca-10(PO4)(6)CO3, space group P1) was calculated by ab initio quantum mechanical methods within the density functional theory (DFT) framework. Starting from athermal results (at 0 K), the combined effect of temperature and pressure was investigated through the quasiharmonic approximation (QHA). In athermal conditions, the equation of state of the CAp unit cell volume can be described by a third-order Birch-Murnaghan formulation, with parameters V-0 = 538.14(5) A(3), K-0 = 106.2(7) GPa, and K' = 4.6(4). The QHA well described the temperature and pressure dependence of the thermodynamics and mechanical properties of the mineral. For instance, the bulk modulus at 0 GPa and ambient temperature (300 K) is K-T0 = 102.95 GPa, which is lower than that of stoichiometric apatite by about 6%. The unit cell thermal expansion coefficient between 0 and 600 K was also calculated and reported. The results are in line with the few available experimental data reported in literature on type AB carbonated hydroxylapatite. The reported findings further extend the knowledge of the mechanical and thermal behaviors of this important mineral found in biological environments, results that are useful for biotechnological and other applications of the (C)OHAp phases.
机译:具有通用化学式(Ca,X)(10)(PO4,Y)(6)Z(2)的钙磷灰石代表了几个领域最重要的矿物家庭,例如骨生物材料,生物材料和矿物学。然而,很少有效地专注于这些相的机械性能,特别是,没有关于碳酸盐(羟基)磷灰石的热机械和热力学性质的数据。在本作工作中,通过密度泛函理论(DFT)框架内的AB Initio量子机械方法计算碳酸化磷灰石(帽,Ca-10(PO4)(6)CO 3,空间组P1)的状态等式。从滴度结果(0 k)开始,通过Quasiharmonic近似(QHA)研究了温度和压力的综合效果。在动脉条件下,可以通过三阶Birch-Murnaghan制剂描述帽单元电池容积的状态等式,参数V-0 = 538.14(5)A(3),K-0 = 106.2(7) GPA和K'= 4.6(4)。 QHA良好地描述了热力学和矿物质的热力学和力学性能的温度和压力依赖性。例如,0GPa和环境温度(300k)的体积模量是K-T0 = 102.95GPa,其低于化学计量磷灰石的约6%。还计算和报道了0至600 k之间的单元电池热膨胀系数。结果符合在AB型碳酸盐型羟基磷灰石的文献中报道的少数可用实验数据。报告的结果进一步延长了生物环境中发现的这一重要矿物的机械和热行为的知识,可用于(C)OHAP阶段的生物技术和其他应用。

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