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Theoretical Study on Adsorption and Diffusion of N Atoms on Cu Low-index Surface 被引量:1
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作者 刁兆玉 张晓明 +1 位作者 王泽新 韩玲利 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2004年第11期1225-1230,共6页
The adsorption and diffusion of N atoms on the three low-index Cu planes were studied using 5-parameter Morse potential (5-MP) method, and the best theory-experiment agreement was obtained. N atom of Cu(100) surface s... The adsorption and diffusion of N atoms on the three low-index Cu planes were studied using 5-parameter Morse potential (5-MP) method, and the best theory-experiment agreement was obtained. N atom of Cu(100) surface sit on the fourfold hollow site with the vertical height of 0.018 nm closely coplanar with the topmost copper layer, and the four CuN bond lengths are 0.182 nm and the fifth CuN distance is 0.199 nm. For Cu(111) system, the existence of aberrant Cu(100) reconstructed structure is approved at higher coverage, and at low coverage the structure is almost an ideal Cu(111) surface structure. With respect to Cu(110) system, the N atoms are adsorbed at LB and H3 sites, not at SB site. The diffusion passage and diffusion barrier of adsorbed N atoms were also studied. 展开更多
关键词 5-MP adsorption and diffusion potential energy surface structure
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Theoretical Studies on Adsorption and Diffusion of Hydrogen Atom on Pd(311) and Ni(311) Stepped Surface
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作者 王泽新 张晓明 于帅芹 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2004年第8期811-815,共5页
The adsorption and diffusion of hydrogen atom on open rough Pd(311) and Ni(311) stepped surface were investigated in detail using 5-parameter Morse Potential (5-MP for short) method. The results on theoretical studies... The adsorption and diffusion of hydrogen atom on open rough Pd(311) and Ni(311) stepped surface were investigated in detail using 5-parameter Morse Potential (5-MP for short) method. The results on theoretical studies indicate that only threefold adsorption states exist at low coverage, and fourfold states are annihilated on the top layer which become the diffusion channels between threefold adsorption states due to strong competition and repulsion between hydrogen adatoms. 展开更多
关键词 5-MP ADSORPTION DIFFUSION structure of potential energy surface
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