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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >The effect of phosphorus and nitrogen co-doped on the synthesis of diamond at high pressure and high temperature
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The effect of phosphorus and nitrogen co-doped on the synthesis of diamond at high pressure and high temperature

机译:磷氮共掺杂对高温高压合成金刚石的影响

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The synthesis of phosphorus and nitrogen co-doped diamond is investigated in the NiMnCo-C system by adding P3N5 or carbonyl iron powders mixed with phosphorus powders under high pressure and high temperature. Experimental results show that the color distribution in diamond crystals with low concentration of P3N5 additive is not uniform. The color becomes deep green with the increase of P3N5 additive. The optical images and FTIR spectra reveal that the nitrogen atoms are more easily incorporated via 1111) than (100) in the same conditions. In addition, the result of FTIR spectra of synthesized diamond indicates that the hydrogen atoms in the form of sp(3)-CH2- are more likely to enter the diamond lattice in the P/N co-doped system, compared with the single N-doped system. The absorption peak at 3107 cm(-1) attributed to vibration of H-related point defects (sp(2)-CH=CH-) is observed in diamonds, which is often found in natural diamonds. The Raman shifting to lower frequency and FWHM value becoming wider are due to the doping of phosphorus atoms. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在NiMnCo-C体系中,通过在高压和高温下添加P3N5或羰基铁粉与磷粉混合,研究了磷和氮共掺杂金刚石的合成。实验结果表明,低浓度P3N5添加剂在金刚石晶体中的颜色分布不均匀。随着P3N5添加剂的增加,颜色变为深绿色。光学图像和FTIR光谱表明,在相同条件下,氮原子比(100)更容易通过1111)结合。此外,合成金刚石的FTIR光谱结果表明,与单个N相比,sp(3)-CH2-形式的氢原子更可能以P / N共掺杂体系的形式进入金刚石晶格。掺杂的系统。在金刚石中观察到归因于H相关点缺陷振动的3107 cm(-1)处的吸收峰(sp(2)-CH = CH-),这在天然金刚石中很常见。拉曼移到较低的频率和FWHM值变宽是由于磷原子的掺杂。 (C)2015 Elsevier Ltd.保留所有权利。

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