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Nitrogen ion irradiation of Au(110) : photoemission spectroscopy and possible crystal structures of gold nitride.

机译:Au(110)的氮离子辐照:光发射光谱和氮化金的可能晶体结构。

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摘要

Photoemission spectroscopy demonstrates the formation of a surface gold nitride upon irradiation of a Au(110) surface with 500 eV nitrogen ions at room temperature. After irradiation two N1s peaks are observed at binding energies of 396.7±0.2 eV and 397.7±0.2 eV along with a broadening of the Au4d5/2 line. Changes in valence-band spectra are also observed, including an additional density of states at 1.6 eV binding energy and new states at ~3.1 eV. Annealing experiments indicate that the two N1s lines are associated with nitrogen compounds of differing thermal stability, possibly due to the formation of more than one nitride phase. To further investigate the properties of gold nitride we have undertaken ab initio pseudopotential calculations on the most likely nitride stoichiometry, Au3N, and identified a novel triclinic crystal structure of a significantly lower energy than the anti-ReO3 expected from a simple consideration of the periodic table, although the latter structure is also found to be stable. The triclinic structure is determined to be metallic, of importance to possible applications.
机译:光发射光谱法表明在室温下用500 eV氮离子照射Au(110)表面后会形成表面氮化金。辐照后,随着Au4d5 / 2线的加宽,观察到两个N1s峰的结合能分别为396.7±0.2 eV和397.7±0.2 eV。还观察到价带谱的变化,包括1.6 eV结合能时的附加态密度和〜3.1 eV时的新态。退火实验表明,两条N1s线与热稳定性不同的氮化合物有关,这可能是由于形成了多个氮化物相造成的。为了进一步研究氮化金的性质,我们对最可能的氮化物化学计量Au3N进行了从头算伪势计算,并确定了一种新型三斜晶晶体结构,其能量远低于通过简单考虑元素周期表而预期的抗ReO3能量,尽管也发现后者结构是稳定的。三斜结构被确定为金属的,对于可能的应用很重要。

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