论文标题

部分可观测时空混沌系统的无模型预测

When carbon impurities trigger the synthesis of alpha boron at high pressure and high temperature

论文作者

Chakraborti, Amrita, Cho, Yeonsoo, Sjakste, Jelena, Baptiste, Benoit, Henry, Laura, Guignot, Nicolas, Godec, Yann Le, Vast, Nathalie

论文摘要

通过组合HPHT实验和密度功能理论(DFT)计算,已经研究了碳在高压和高温(HPHT)下α硼中的作用。从5 GPA处的β菱形或无定形的硼和无定形碳开始,在温度比在硼一图中报道的温度高得多,在1473 K和2273 K之间反复观察到Alpha Boron相。 DFT对碳插入α菱形硼原子结构对形成焓,体积和光学性质的影响的研究表明,只有(B11C)取代的Icosahedron缺损构成了在α硼中观察到的轻微体积收缩的(bor)。它也与观察到的α硼晶体的红色兼容,并且始终具有非常低的地层能。我们的计算还提供了一种评估样品中碳浓度的校准工具。最后,发现合成温度是按需调整碳浓度的一种简单手段。

The role of carbon in the formation of alpha boron at high pressure and high temperature (HPHT) has been investigated by combining HPHT experiments and density functional theory (DFT) calculations. Starting from beta rhombohedral or amorphous boron and amorphous carbon at 5 GPa, the alpha boron phase has been repeatedly observed between 1473 K and 2273 K, at temperatures that are much higher than those reported in the phase diagram of boron. The DFT investigation of the effect of carbon insertion into the alpha rhombohedral boron atomic structure on the formation enthalpy, volume and optical properties shows that only the (B11C) substituted icosahedron defect accounts for the slight volume contraction observed in α boron. It is also compatible with the observed red colour of α boron crystals, and consistently has a very low formation energy. Our calculations also provide a calibration tool to evaluate the carbon concentration in the samples. Finally, the synthesis temperature is found to be an easy means to tune the carbon concentration on demand.

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