Work function measurements of diamond film surfaces
W.A. Mackie, A. E. Bell
Abstract
W.A. Mackie, A. E. Bell
Abstract
We report on the growth and subsequent work function measurement of diamond film covered surfaces. Diamond films were grown via a thermal CVD technique. Two feed gas mixtures were used, 1% CH/sub 4//99% H/sub 2/ and 1% CH/sub 4//100 ppm HN/sub 3///spl sim/99% H/sub 2/. Raman spectroscopy was used to verify diamond growth. Electron emission was investigated and work function values obtained in the thermionic emission as well as field emission modes. However, we report mainly on a unique way to ascertain the absolute work function of diamond surfaces using the field emission retarding potential (FERP) technique. This experimental method readily lends itself to these types of investigations where values can be determined apart from thermal or field effects.
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We report on the growth and subsequent work function measurement of diamond film covered surfaces. Diamond films were grown via a thermal CVD technique. Two feed gas mixtures were used, 1% CH/sub 4//99% H/sub 2/ and 1% CH/sub 4//100 ppm HN/sub 3///spl sim/99% H/sub 2/. Raman spectroscopy was used to verify diamond growth. Electron emission was investigated and work function values obtained in the thermionic emission as well as field emission modes. However, we report mainly on a unique way to ascertain the absolute work function of diamond surfaces using the field emission retarding potential (FERP) technique. This experimental method readily lends itself to these types of investigations where values can be determined apart from thermal or field effects.
Key concepts: Work function, Thermionic emission, Diamond, Field electron emission, Raman spectroscopy, Materials science, Analytical Chemistry (journal), Synthetic diamond