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1.
金刚石具有一系列优于其他材料的极限特性,应用领域十分广泛.金刚石大单晶更能充分发挥其功能特性,从而成为国内外研究的热点.为此,本文在介绍金刚石大单晶高温高压合成原理及工艺技术的基础上,重点综述了四种类型的金刚石大单晶以及掺杂金刚石大单晶的研究现状和研究重点. Ⅰa型金刚石大单晶可由Ⅰb型金刚石通过高温高压退火处理得到,其中氮的转变机制及效率研究十分重要;对Ⅰb型金刚石大单晶的表面分析表征、晶体缺陷控制、再结晶石墨析出、多晶种法批量化生产方面进行了综述;对Ⅱa型金刚石大单晶中除氮剂和触媒的选择、微晶石墨析出与抑制方面的研究进行了介绍;研究了Ⅱb型金刚石中硼元素的扇区存在及其对合成金刚石生长特性的影响;掺杂金刚石大单晶主要从B, N, S, P等不同掺杂元素的不同掺杂源或与硼等协同掺杂的研究状况进行了介绍.并提出金刚石大单晶需要在Ⅰb及Ⅱa型的批量化、Ⅱb型的超导特性、掺杂n型半导体方面加强研究.  相似文献   

2.
本文利用六面顶压机,在5.6 GPa, 1250—1450℃的高压高温条件下,分别选用FeNiCo和NiMnCo触媒合金开展了金刚石大单晶的生长实验,系统地考察了触媒组分对金刚石单晶裂纹缺陷的影响.首先,通过对两种组分触媒晶体生长实验对比发现,金刚石大单晶裂纹缺陷出现的概率与触媒组分相关联.同NiMnCo触媒相比, FeNiCo触媒生长的金刚石单晶更容易出现生长裂纹.我们认为,这与FeNiCo触媒黏度高、流动性差、碳素输运能力差、生长中晶体比表面积大,进而导致其对生长条件稳定性的要求较高有关.其次,两种触媒极限增重速度和生长时间的关系曲线表明,相同生长时间条件下, NiMnCo触媒生长金刚石单晶的极限增重速度相对较大.再次,扫描电子显微镜测试结果表明,裂纹缺陷的出现与否同晶体表面平整度的高低无必然联系,表面平整度高的金刚石单晶内部也可能存在裂纹缺陷.最后,经对金刚石单晶傅里叶微区红外测试结果进行分析,得出了氮杂质含量的高低与金刚石单晶裂纹缺陷的出现与否无内在关联性的研究结论.  相似文献   

3.
利用液压缸直径为550 mm的大缸径六面顶压机, 在5.6 GPa, 1200-1400 ℃的高压高温条件下, 分别采用单晶种法和多晶种法, 开展了Ib型六面体宝石级金刚石单晶的生长研究, 系统考察了合成腔体尺寸对Ib型六面体金刚石大单晶生长的影响. 首先, 阐述了合成腔体尺寸对合成设备油压传递效率的影响, 研究得到了设备油压与腔体内实际压力的关系曲线; 其次, 选择尺寸为Φ 14 mm的合成腔体, 分别采用单晶种法和多晶种法(5颗晶种), 进行Ib型六面体金刚石大单晶的生长实验, 研究阐述了Φ 14 mm合成腔体的晶体生长实验规律; 再次, 为了解决液压缸直径与合成腔体尺寸不匹配的问题, 将合成腔体尺寸扩大到26 mm, 并开展了多晶种法六面体金刚石大单晶的生长研究, 最多单次生长出14 颗优质3 mm级Ib型六面体金刚石单晶, 研究得到了Φ 26 mm合成腔体生长3 mm级Ib型六面体金刚石单晶的实验规律, 并就两种腔体合成金刚石单晶的总体生长速度与生长时间的关系进行了讨论; 最后, 借助于拉曼光谱, 将合成的优质六面体金刚石单晶与天然金刚石单晶进行对比测试, 对所合成晶体的结构及品质进行了表征.  相似文献   

4.
温度对Ib型和IIa型金刚石大单晶(100)表面特征的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
本文在5.6 GPa, 1250–1340 ℃的条件下, 利用温度梯度法, 以FeNiMnCo 合金为触媒, 沿籽晶的(100)晶面成功合成了不同晶形的优质Ib型和IIa型金刚石大单晶. 利用激光拉曼附件显微镜, 分别对上述不同温度下合成的两类金刚石样品上表面(100)面的中心区域及棱角区域进行观察分析. 研究发现, Ib型和IIa型金刚石大单晶(100)晶面上从中心到棱角处黑色纹路的分布逐渐变黑变密集; 另外, 随着金刚石合成温度的升高, Ib型金刚石大单晶(100)面上黑色纹路由稀疏逐渐变稠密, 而IIa型金刚石大单晶的黑色纹路较为稀疏; Ib型金刚石大单晶的形貌特征表现为从低温晶体的不规则分布过渡到中温、高温晶体的典型树枝状分布. IIa型金刚石大单晶(100)面特征随温度变化规律与Ib型的类似. 这两类金刚石大单晶表面特征的差异可能是由于IIa 型金刚石具有比Ib型更小的生长速度和更少的氮含量. 最后, 对两类塔状金刚石大单晶进行拉曼光谱测试分析, 结果表明IIa型金刚石大单晶的品质较Ib型金刚石大单晶好.  相似文献   

5.
采用声发射检测技术,对高温高压下人造金刚石单晶的生长过程进行了检测和分析。利用由PCI-8型声发射仪和LMD-800型铰链式六面顶压机组成的声发射检测系统,检测了金刚石单晶的生长过程。将金刚石单晶生长和不生长过程中检测到的声发射信号进行对比和频谱分析,结果表明:声发射信号与金刚石单晶生长过程存在对应关系;金刚石单晶生长对应的声发射信号是一种低频信号,可以利用声发射信号的变化规律研究金刚石单晶在高温高压条件下的原位反应机理。  相似文献   

6.
李勇  李宗宝  宋谋胜  王应  贾晓鹏  马红安 《物理学报》2016,65(11):118103-118103
在压力6.0 GPa和温度1600 K条件下, 利用温度梯度法研究了(111)晶面硼氢协同掺杂Ib型金刚石的合成. 傅里叶红外光谱测试表明: 氢以sp3杂化的形式存在于所合成的金刚石中, 其对应的红外特征吸收峰位分别位于2850 cm-1和2920 cm-1处. 此外, 霍尔效应测试结果表明: 所合成的硼氢协同掺杂金刚石具有p型半导体材料特性. 相对于硼掺杂金刚石而言, 由于氢的引入导致硼氢协同掺杂金刚石电导率显著提高. 为了揭示硼氢协同掺杂金刚石电导率提高的原因, 对不同体系进行了第一性原理理论计算, 计算结果表明其与实验结果符合. 该研究对金刚石在半导体领域的应用有重要的现实意义.  相似文献   

7.
采用声发射技术对高温高压下人造金刚石单晶的生长过程进行了动态检测。结合合成压块的断口形貌,对金刚石单晶生长过程对应的主要声发射参数进行了分析。结果表明,声发射信号的能量计数、振铃计数、幅度和上升时间等特征参数能客观反映金刚石单晶在高温高压下的动态生长规律,为研究金刚石单晶的生长机制提供了重要的实验依据。  相似文献   

8.
高温高压金刚石单晶生长界面的研究   总被引:5,自引:0,他引:5       下载免费PDF全文
 利用扫描电镜及Auger电子谱技术研究了高温高压下金刚石单晶生长界面的特性,观察到了金刚石单晶表面及金属膜表面的沟槽结构及金刚石-金属、金属-石墨两个主界面间的过渡层结构及界面间C原子电子组态的变化。  相似文献   

9.
高温高压条件下石墨的再结晶与金刚石单晶的生长   总被引:10,自引:3,他引:10       下载免费PDF全文
 用电子显微镜观察到了在高温高压条件下再结晶石墨的形状随温度变化而改变的规律。实验表明:从石墨向金刚石的转变,与石墨在催化剂——溶剂合金中的再结晶状态有关,类球形再结晶石墨是转变成金刚石小单元的基础。金刚石晶体的不同形态及其多样化的表面结构表明金刚石单晶的生长具有比较复杂的过程。研究了具有一定规则形状由类球形再结晶石墨晶粒组成的聚合体,这种聚合体将在适当温度压力下转变成金刚石颗粒。本研究给出了生长粗颗粒、晶形完整的金刚石单晶的原则办法。  相似文献   

10.
11.
Large diamond crystals were successfully synthesized by a FeNi-C system using the temperature gradient method under high-pressure high-temperature conditions. The assembly of the growth cell was improved and the growth process of diamond was investigated. Effects of the symmetry of the carbon convection field around the growing diamond crystal were investigated systematically by adjusting the position of the seed crystal in the melted catalyst/solvent. The results indicate that the morphologies and metal inclusion distributions of the synthetic diamond crystals vary obviously in both symmetric and non-symmetric carbon convection fields with temperature. Moreover, the finite element method was applied to analyze the carbon convection mode of the melted catalyst/solvent around the diamond crystal. This work is helpful for understanding the growth mechanism of diamond.  相似文献   

12.
Large diamond crystals were successfully synthesized by FeNi-C system using temperature gradient method under high-pressure high-temperature conditions. The assembly of the growth cell was improved and the growth process of diamond was investigated. Effects of the symmetry of carbon convection field around the growing diamond crystal were investigated systematically by adjusting the position of seed crystal in the melted catalyst/solvent. The results indicate that morphologies and metal inclusion distributions of the synthetic diamond crystals vary obviously in both symmetric and non-symmetric carbon convection fields with temperature. Moreover, finite element method was applied to analyze carbon convection mode of the melted catalyst/solvent around the diamond crystal. This work is helpful for understanding the growth mechanism of diamond.  相似文献   

13.
This paper reprots that with Ni-based catalyst/solvent and with a dopant of NaN 3,large green single crystal diamonds with perfect shape are successfully synthesized by temperature gradient method under high pressure and high temperature in a China-type cubic anvil high-pressure apparatus (SPD-6×1200),and the highest nitrogen concentration reaches approximately 1214-1257 ppm calculated by infrared absorption spectra.The synthesis conditions are about 5.5 GPa and 1240-1300 C.The growth behaviour of diamond with high-nitrogen concentration is investigated in detail.The results show that,with increasing the content of NaN 3 added in synthesis system,the width of synthesis temperature region for growth high-quality diamonds becomes narrower,and the morphology of diamond crystal is changed from cube-octahedral to octahedral at same temperature and pressure,the crystal growth rate is slowed down,nevertheless,the nitrogen concentration doped in synthetic diamond increases.  相似文献   

14.
Large diamonds have successfully been synthesized from FeNiMnCo-S-C system at temperatures of 1255-1393 ℃and pressures of 5.3-5.5 GPa.Because of the presence of sulfur additive,the morphology and color of the large diamond crystals change obviously.The content and shape of inclusions change with increasing sulfur additive.It is found that the pressure and temperature conditions required for the synthesis decrease to some extent with the increase of S additive,which results in left down of the V-shape region.The Raman spectra show that the introduction of additive sulfur reduces the quality of the large diamond crystals.The x-ray photoelectron spectroscopy(XPS) spectra show the presence of S in the diamonds.Furthermore,the electrical properties of the large diamond crystals are tested by a four-point probe and the Hall effect method.When sulfur in the cell of diamond is up to 4.0 wt.%,the resistance of the diamond is 9.628×10~5 Ω·cm.It is shown that the large single crystal samples are n type semiconductors.This work is helpful for the further research and application of sulfur-doped semiconductor large diamond.  相似文献   

15.
Diamond crystal crystallized in Fe–Mg–C system with Archimedes buoyancy as a driving force is established under high pressure and high temperature conditions. The experimental results indicate that the addition of the Mg element results in the nitrogen concentration increasing from 87 ppm to 271 ppm in the diamond structure. The occurrence of the {100}plane reveals that the surface character is remarkably changed due to the addition of Mg. Micro-Raman spectra indicate that the half width of full maximum is in a range of 3.01 cm~(-1)–3.26 cm~(-1), implying an extremely good quality of diamond specimens in crystallization.  相似文献   

16.
A series of diamond crystals doped with hydrogen is successfully synthesized using LiH as the hydrogen source in a catalyst-carbon system at a pressure of 6.0 GPa and temperature ranging from 1255 C to 1350 C.It is shown that the high temperature plays a key role in the incorporation of hydrogen atoms during diamond crystallization.Fourier transform infrared micro-spectroscopy reveals that most of the hydrogen atoms in the synthesized diamond are incorporated into the crystal structure as sp 3-CH 2-symmetric(2850 cm-1) and sp 3 CH 2-antisymmetric vibrations(2920 cm-1).The intensities of these peaks increase gradually with an increase in the content of the hydrogen source in the catalyst.The incorporation of hydrogen impurity leads to a significant shift towards higher frequencies of the Raman peak from 1332.06 cm-1 to 1333.05 cm-1 and gives rise to some compressive stress in the diamond crystal lattice.Furthermore,hydrogen to carbon bonds are evident in the annealed diamond,indicating that the bonds that remain throughout the annealing process and the vibration frequencies centred at 2850 and 2920 cm-1 have no observable shift.Therefore,we suggest that the sp 3 C-H bond is rather stable in diamond crystals.  相似文献   

17.
In this paper,we report on the influence of annealing treatment on as-grown Ib-type diamond crystal under high pressure and high temperature in a china-type cubic anvil high-pressure apparatus.Experiments are carried out at a pressure of 7.0 GPa and temperatures ranging from 1700 C to 1900 C for 1 h.Annealing treatment of the diamond crystal shows that the aggregation rate constant of nitrogen atoms in the as-grown Ib-type diamond crystal strongly depends on diamond morphology and annealing temperature.The aggregation rate constant of nitrogen remarkably increases with the increase of annealing temperature and its value in octahedral diamond is much higher than that in cubic diamond annealed at the same temperature.The colour of octahedral diamond crystal is obviously reduced from yellow to nearly colorless after annealing treatment for 1 h at 1900 C,which is induced by nitrogen aggregation in a diamond lattice.The extent of nitrogen aggregation in an annealed diamond could approach approximately 98% indicated from the infrared absorption spectra.The micro-Raman spectrum reveals that the annealing treatment can improve the crystalline quality of Ib-type diamond characterized by a half width at full maximum at first order Raman peak,and therefore the annealed diamond crystals exhibit nearly the same properties as the natural IaA-type diamond stones of high quality in the Raman measurements.  相似文献   

18.
In order to synthesize high-quality type-Ⅱa large diamond, the selection of catalyst is very important, in addition to the nitrogen getter. In this paper, type-IIa large diamonds are grown under high pressure and high temperature(HPHT) by using the temperature gradient method(TGM), with adopting Ti/Cu as the nitrogen getter in Ni_(70)Mn_(25)Co_5(abbreviated as NiMnCo) or Fe_(55)Ni_(29)Co_(16)(abbreviated FeNiCo) catalyst. The values of nitrogen concentration(N_c) in both synthesized high-quality diamonds are less than 1 ppm, when Ti/Cu(1.6 wt%) is added in the FeNiCo or Ti/Cu(1.8 wt%) is added in the NiMnCo. The difference in solubility of nitrogen between both catalysts at HPHT is the basic reason for the different effect of Ti/Cu on eliminating nitrogen. The nitrogen-removal efficiency of Ti/Cu in the NiMnCo catalyst is less than in the FeNiCo catalyst. Additionally, a high-quality type-Ⅱa large diamond size of 5.0 mm is obtained by reducing the growth rate and keeping the nitrogen concentration of the diamond to be less than 1 ppm, when Ti/Cu(1.6 wt%) is added in the FeNiCo catalyst.  相似文献   

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