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Effects of zinc additive on the HPHT synthesis of diamond in Fe-Ni-C and Fe-C systems

机译:锌添加剂对Fe-Ni-C和Fe-C体系中金刚石高温高压合成的影响

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摘要

In the series of experiments at 5.0-7.0 GPa and 1300-1800 °C with the duration from 15 min to 2 h, the diamond crystals were synthesized in the Fe-Ni-C and Fe-C systems with zinc additive and the capability of zinc for converting graphite to diamond were also investigated in this work. Compared with the diamond synthesis using conventional catalysts, much higher temperatures are required for the nucleation and growth of diamond in Fe-Ni-Zn-C and Fe-Zn-C systems. The morphology of synthesized diamond crystals changes regularly from cub-octahedron to octahedron in the Fe-Ni-C system with increasing zinc additive, while only octahedral diamonds form in the Fe-Zn-C system. The diamond growth is accelerated by appropriate addition of zinc in conventional catalysts while the excessive zinc additive may have a suppressive effect on the diamond nucleation. We also estabish the essential dependence of diamond nucleation and morphology on the composition of crystallization medium in the Fe-Ni-Zn-C and Fe-Zn-C systems. Based on our analysis of the diamond surface configuration, we suggest that the formation of the different defects on the {100} and {111} faces is most likely due to the two simultaneous growth process on the {111} faces.
机译:在5.0-7.0 GPa和1300-1800°C的条件下进行的一系列实验(持续15分钟至2小时),在具有锌添加剂的Fe-Ni-C和Fe-C体系中合成了金刚石晶体。在这项工作中还研究了将石墨转化为金刚石的锌。与使用常规催化剂进行金刚石合成相比,在Fe-Ni-Zn-C和Fe-Zn-C系统中成核和生长金刚石需要更高的温度。在Fe-Ni-C系统中,随着锌添加量的增加,合成金刚石晶体的形态从长方八面体到八面体有规律地变化,而在Fe-Zn-C系统中仅形成八面体金刚石。通过在常规催化剂中适当添加锌,可以促进金刚石的生长,而过量的锌添加剂可能会对金刚石成核产生抑制作用。我们还确定了金刚石成核和形态对Fe-Ni-Zn-C和Fe-Zn-C系统中结晶介质组成的本质依赖性。根据我们对金刚石表面构型的分析,我们建议{100}和{111}面上不同缺陷的形成很可能是由于{111}面上的两个同时生长过程所致。

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