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首页> 外文期刊>Entropy >Thermodynamic Analysis about Nucleation and Growth of Cubic Boron Nitride Crystals in the hBN-Li3N System under High Pressure and High Temperature†
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Thermodynamic Analysis about Nucleation and Growth of Cubic Boron Nitride Crystals in the hBN-Li3N System under High Pressure and High Temperature†

机译:hBN-Li 3 N体系中高压高温下立方氮化硼晶体成核和生长的热力学分析†

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The nucleation of cubic boron nitride (cBN) single crystals synthesized with lithium nitride (Li3N) as a catalyst under high pressure and high temperature (HPHT) was analyzed. Many nanometer-sized cubic boron nitride nuclei formed in the near surface layer, as detected by high resolution transmission electron microscopy. Based on the experiment results, the transformation kinetics is described by a nucleation and growth process in the thermodynamic stability region of cBN. A theoretical description is developed based on the heterogeneous nucleation and layer growth mechanism, and the relevant parameters are estimated and discussed. The critical crystal radius, r*, increases with the temperature under constant pressure; the change with temperature more pronounced at lower pressure (such as 4.5 GPa). The crystal growth velocity increased with the temperature, and it is parabolic with temperature under certain pressure. These results are consistent with experimental data.
机译:分析了在高温高压(HPHT)下以氮化锂(Li <3> N)为催化剂合成的立方氮化硼(cBN)单晶的成核现象。通过高分辨率透射电子显微镜检测,在近表面层中形成了许多纳米级立方氮化硼核。根据实验结果,通过cBN热力学稳定性区域中的成核和生长过程描述了转变动力学。基于异相成核和层生长机理,进行了理论描述,并对相关参数进行了估计和讨论。在恒定压力下,临界晶体半径r *随着温度的升高而增加;在较低压力(例如4.5 GPa)下,温度的变化更为明显。晶体的生长速度随着温度的升高而增加,并且在一定压力下随温度呈抛物线。这些结果与实验数据一致。

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