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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Understanding of the shape-controlled synthesis of strip shape diamond under high pressure and high temperature conditions
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Understanding of the shape-controlled synthesis of strip shape diamond under high pressure and high temperature conditions

机译:了解高压和高温条件下条形金刚石的形状控制合成

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摘要

We present the shape-controlled synthesis of strip shape diamond with stretched crystal faces along {100} or {111} direction and larger length-to-radius ratio than the conventional diamond in the designed NiFe-C system at high pressures and high temperatures (HPHT). A series of synthetic experimental results on the strip shape diamonds were obtained at different pressures and temperatures. Under the constant pressure condition, the morphology of the strip shape diamond varied with the increase of temperature obviously. Fourier transform infrared (FTIR) micro spectroscopy and Raman spectroscopy revealed that the various locations of crystal face have different nitrogen impurity concentration, and internal strain and defects in these strip shape crystals. According to these results, it can be concluded that the difference of growth rates at various crystal faces results in different crystal morphologies. Based on the growth characteristics, we suggest that composition segregation of the metal film around the growing crystal induces the formation of strip shape diamond.
机译:我们介绍了在高压和高温下设计的NiFe-C系统中具有沿{100}或{111}方向拉伸的晶体面且比常规金刚石更大的长径比的带状金刚石的形状控制合成( HPHT)。在不同的压力和温度下,获得了关于带状钻石的一系列合成实验结果。在恒压条件下,带状金刚石的形貌随温度的升高而明显变化。傅立叶变换红外(FTIR)显微光谱和拉曼光谱显示,晶面的各个位置具有不同的氮杂质浓度,以及这些条形晶体的内部应变和缺陷。根据这些结果,可以得出结论,在各种晶面上的生长速率的差异导致不同的晶体形态。基于生长特征,我们建议在生长的晶体周围金属膜的成分偏析诱导条形金刚石的形成。

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