Diamond formation and wettability in a Mg-Cu-C system under high pressure and high temperature

被引:12
|
作者
Andreyev, AV [1 ]
Kanda, H [1 ]
机构
[1] NATL INST RES INORGAN MAT,TSUKUBA,IBARAKI 305,JAPAN
关键词
HPHT diamond; morphology; metallic solvent; wettability;
D O I
10.1016/S0925-9635(96)00576-6
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In order to decrease the pressure and temperature region for diamond formation from a Mg-C system, MS-Cu alloys with a wide range of composition have been used as the catalyst for diamond synthesis. Diamond growth layer has successfully been formed on seed crystals at 6 GPa and 1550 degrees C in the Mg-Cu system, which is 2 GPa and 200 degrees C lower than in pure Mg. Morphology of the grown crystal depends on composition of the alloys, namely, smooth growth surfaces were formed only in a range between 40 and 50 at.% Mg in the Cu-Mg alloys. Rough growth surfaces were formed in the Cu-rich side, and the seed crystals were dissolved in the Mg-rich side. Measurement of wettability between graphite and the Mg-Cu alloys at the high P-T condition gave a curve of wetting angle vs. Mg-Cu composition in which a plateau and bending points are present. The curve is explained to be due to attractive interaction between Mg and Cu. The experimental results conclude that the morphological change depending on the Mg-Cu composition is closely related to the wetting angle, i.e., interaction between metal and carbon.
引用
收藏
页码:28 / 32
页数:5
相关论文
共 50 条
  • [31] Study on synthesizing diamond from Fe-Ni-C system at high temperature and high pressure
    School of Materials Science and Engineering, Shandong University, Jinan 250061, China
    不详
    Gaoya Wuli Xuebao, 2007, 4 (401-408):
  • [32] Diamond growth in a high temperature and high pressure Fe-Ni-C-Si system: Effect of synthesis pressure
    Liu, Yang
    Wang, Zhiwen
    Li, Bowei
    Zhao, Hongyu
    Wang, Shengxue
    Chen, Liangchao
    Ma, Hongan
    Jia, Xiaopeng
    CHINESE PHYSICS B, 2023, 32 (12)
  • [33] CONVERSION OF FULLERENES TO DIAMOND UNDER HIGH-PRESSURE AND HIGH-TEMPERATURE
    MA, YZ
    ZOU, GT
    YANG, HB
    MENG, JF
    APPLIED PHYSICS LETTERS, 1994, 65 (07) : 822 - 823
  • [34] Synthesis of diamond from carbon nanotubes under high pressure and high temperature
    Cao, LM
    Gao, CX
    Sun, HP
    Zou, GT
    Zhang, Z
    Zhang, XY
    He, M
    Zhang, M
    Li, YC
    Zhang, J
    Dai, DY
    Sun, LL
    Wang, WK
    CARBON, 2001, 39 (02) : 311 - 314
  • [35] Study on the property of nanometric diamond particles under high temperature and high pressure
    Wen, Chao
    Zhou, Gang
    Hao, Zhaoyin
    Sun, Deyu
    Li, Xun
    Liu, Xiaoxin
    Shi, Xiaofeng
    Huo, Hongfa
    Gaoya Wuli Xuebao/Chinese Journal of High Pressure Physics, 2000, 14 (02): : 119 - 124
  • [36] Defects of diamond single crystal grown under high temperature and high pressure
    Su, Qingcai
    Zhang, Jianhua
    Li, Musen
    THIN SOLID FILMS, 2013, 546 : 457 - 460
  • [37] Diamond Crystallization from an Antimony-Carbon System under High Pressure and Temperature
    Palyanov, Yuri N.
    Borzdov, Yuri M.
    Kupriyanov, Igor N.
    Bataleva, Yuliya V.
    Khokhryakov, Alexander F.
    Sokol, Alexander G.
    CRYSTAL GROWTH & DESIGN, 2015, 15 (05) : 2539 - 2544
  • [38] High-pressure synthesis and characterization of diamond from an Mg-Si-C system
    Palyanov, Y. N.
    Kupriyanov, I. N.
    Borzdov, Y. M.
    Bataleva, Y. V.
    CRYSTENGCOMM, 2015, 17 (38): : 7323 - 7331
  • [39] DIAMOND FORMATION FROM GLASSY-CARBON UNDER HIGH-PRESSURE AND TEMPERATURE CONDITIONS
    HIRANO, SI
    SHIMONO, K
    NAKA, S
    JOURNAL OF MATERIALS SCIENCE, 1982, 17 (07) : 1856 - 1862
  • [40] Accurate structures of diamond under high- pressure and temperature
    Deguchi, Yuka
    Nishibori, Eiji
    Iversen, Bo
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2017, 73 : C1105 - C1105