4.4 Article

Influence of RF(N2) plasma conditions on the chemical interaction and stability of activated nitrogen with polycrystalline diamond surfaces: A XPS, TPD and HREELS study

Journal

SURFACE SCIENCE
Volume 679, Issue -, Pages 37-49

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.susc.2018.08.019

Keywords

Diamond thin films; N-termination; RE plasma; XPS; HREELS; TPD

Funding

  1. Schulich fellowship, Technion-IIT fund

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In this study, the chemical interaction of nitrogen with polycrystalline diamond surfaces is investigated. The interaction of nitrogen with the diamond surface was activated using a non-line of sight interaction RF(N-2) plasma source equipped with a neutralizer placed at the exit of the plasma source to decrease the density of the high energetic nitrogen species arriving at the surface. Nitridation process has been carried out for different N-2 plasma exposure time (20 and 30 min) and pressure (3 x 10(-2) and 7 x 10(-2) Torr) at plasma power of 36 W. The chemical and structural properties of nitrided (as-processed, annealed to different temperatures and hydrogenated) diamond surfaces were evaluated using X-ray photoelectron spectroscopy, high-resolution electron energy loss spectroscopy (HREELS) and temperature programmed desorption (TPD). The HREELS analysis of nitrided diamond surfaces suggests that the plasma processing pressure and the exposure time play a crucial role in controlling surface structural quality. The presence of the optical phonon (similar to 300 meV), which is a signature feature of well-defined and defects-free diamond surface; confirms the crystalline quality of nitride surfaces and nitrogen present in different bonding configurations: C-NH2 and C=N Further, the HREELS analysis shows that N-H surface bonds stability is below 700 degrees C. TPD spectra show N-2 and HCN peaks at similar to 600 degrees C that are associated with nitrogen surface bonded species. Hydrogenation of annealed surfaces revealed that the surface structural recovery is possible with the low level of structural damage.

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