LIU Jie,  HEI Li-fu,  CHEN Guang-chao,  LI Cheng-ming,  TANG Wei-zhong,  LU Fan-xiu. Growth of ultrananocrystalline diamond films in an Ar-rich CH4/H2/Ar atmosphere with varying H2 concentrations. New Carbon Mater., 2013, 28(2): 134-139. doi: 10.1016/S1872-5805(13)60072-4
Citation: LIU Jie,  HEI Li-fu,  CHEN Guang-chao,  LI Cheng-ming,  TANG Wei-zhong,  LU Fan-xiu. Growth of ultrananocrystalline diamond films in an Ar-rich CH4/H2/Ar atmosphere with varying H2 concentrations. New Carbon Mater., 2013, 28(2): 134-139. doi: 10.1016/S1872-5805(13)60072-4

Growth of ultrananocrystalline diamond films in an Ar-rich CH4/H2/Ar atmosphere with varying H2 concentrations

doi: 10.1016/S1872-5805(13)60072-4
Funds:  National Natural Science Foundation of China (50872010, 51102013).
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  • Author Bio:

    LIU Jie (1986- ), Ph.D. candidate| engaged in the research of Ultrananocrystalline diamond and single crystalline diamond. E-mail: ljpy000@126.com

  • Received Date: 2013-01-15
  • Accepted Date: 2013-05-08
  • Rev Recd Date: 2013-04-02
  • Publish Date: 2013-04-20
  • Ultrananocrystalline diamond (UNCD) films were prepared by microwave plasma chemical vapor deposition using argon-rich CH4/H2/Ar plasmas with different H2 concentrations from 5 to 20%. The influence of the H2 concentration on the microstructure, morphology and phase composition of the UNCD films was investigated by SEM, XRD, surface profilometry and Raman spectroscopy. It is found that the grain size and surface roughness increase with the H2 concentration. The grain size of the UNCD is less than 6 nm when the H2 concentration is less than 10% and it is still less than 10 nm even when the concentration is 20%. The thickness of the UNCD films is 1.75, 1.80, 1.65 and 2.9 μm using H2 concentrations of 5, 10, 15 and 20%, respectively. All the films are dense and compact in the cross section, and smooth on the top surface.
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