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Dive into the research topics where Young C. Kang is active.

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Featured researches published by Young C. Kang.


Journal of Physics: Condensed Matter | 2003

Electron bombardment of water adsorbed on Zr(0001) surfaces

S. Ankrah; Young C. Kang; R. D. Ramsier

A study of the effects of electron bombardment on water adsorbed on Zr(0001) is reported. Zirconium surfaces are dosed with isotopic water mixtures at 160 K followed by electron bombardment (485 eV). The system is then probed by low energy electron diffraction, temperature programmed desorption (TPD) and Auger electron spectroscopy (AES). No evidence is found that would indicate preferential mixing of hydrogen from the bulk with isotopic water dissociation products during TPD. However, electron bombardment results in the sharpening of a hydrogen/deuterium desorption peak near 320 K and the production of water near 730 K at low water exposures. In addition, although water does not oxidize Zr(0001) thermally, electron bombardment of adsorbed water induces a shift of about 2 eV in the Zr AES features indicating that the surface is partially oxidized by electron bombardment.


Journal of Nuclear Materials | 2000

Ultra-high vacuum investigation of the surface chemistry of zirconium

Young C. Kang; M. M. Milovancev; D. A. Clauss; Matthias Lange; R. D. Ramsier


Surface and Interface Analysis | 2002

Ammonia adsorption on Zr(0001): effect of electron bombardment on hydrogen production

N. Stojilovic; Young C. Kang; R. D. Ramsier


Journal of Nuclear Materials | 2002

Investigation of nitric oxide adsorption on Zr(0001)

Young C. Kang; R. D. Ramsier


Surface Science | 2002

Kinetic effects of subsurface species on Zr(0001) surface chemistry

Young C. Kang; R. D. Ramsier


Archive | 2002

The Effect of Electron Bombardment on Isotopic Water Adsorbed on Zr(0001) Surfaces

S. Ankrah; Young C. Kang; R. D. Ramsier


Archive | 2002

Thermal Chemistry of Nitric Oxide on Zirconium Surfaces

Young C. Kang; R. D. Ramsier


Archive | 2002

Dissociation of Ammonia on Zr(0001) Induced by Thermal and Electronic Excitation

N. Stojilovic; S. Ankrah; Young C. Kang; R. D. Ramsier


Archive | 2002

Production of water as a result of ammonia adsorption on Zr(0001) and the influence of electron bombardment

N. Stojilovic; Young C. Kang; R. D. Ramsier


Archive | 2001

The Reactivity of Nitrogen-Containing Adsorbates on Zr(0001)

Young C. Kang; R. D. Ramsier

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N. Stojilovic

University of Wisconsin–Oshkosh

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