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首页> 外文期刊>Zeitschrift fur Physikalische Chemie: International Journal of Research in Physical Chemistry and Chemical Physics >Physisorption of Small Molecules on Single Crystal Alkali Halide Surfaces:CO and N_2 Adsorbed on KCl(lOO)
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Physisorption of Small Molecules on Single Crystal Alkali Halide Surfaces:CO and N_2 Adsorbed on KCl(lOO)

机译:小分子在卤化单晶碱表面上的物理吸附:KCl(100)上吸附的CO和N_2

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The adsorption of CO and N2 on KCl(100) single crystal cleavage planes has been investigated by means of low energy electron diffraction (LEED) at primary currents in the nA range as well as polarization infrared spectroscopy (PIRS) in transmittance geometry.These isoelectronic adsorbates behave very similarly,and three different adsorption phases can be distinguished as a function of surface coverage for both of them.Initially a (1 x 1) structure is observed and assigned to a commensurate monolayer with one molecule per KC1 ion pair.The CO infrared spectrum of this "phase I' is characterized by a doublet absorption of the CO stretching vibration,which is discussed in the context of a correlation field splitting.The lack of superstructure diffraction peaks is attributed to a high degree of orientational disorder in this phase.From LEED adsorption isotherms the isosteric heat of adsorption of N_2 has been determined to be 1 1 ±3 kJ mol '.Upon increase in coverage by 50% 'phase IT is formed which exhibits a large number of additional diffraction spots.It is assigned to a bilayer in which the second layer is only half filled.Based on the LEED experiments a structure model is proposed in which the second layer is characterized by growth in rows along the [210] direction and a high degree of roughness in the perpendicular direction.This model can explain all experimentally observed main features.Finally upon further exposure formation of three-dimensional solid is observed,which proceeds via Stransky-Krastanov growth of crystalline 3D clusters with the structure of the low-temperature cubic alpha'-phase.A simulation of the CO cluster infrared spectra within the dipole-dipole coupling approach can reproduce all major observed vibrational features.
机译:已经通过低能量电子衍射(LEED)在nA范围内的一次电流下研究了CO和N2在KCl(100)单晶分裂面上的吸附,并通过了透射几何学中的偏振红外光谱(PIRS)。被吸附物的行为非常相似,并且可以区分这三个不同的吸附相作为它们的表面覆盖率的函数。最初观察到(1 x 1)结构并将其分配给每个KC1离子对具有一个分子的相应单分子层。该“ I相”的红外光谱的特征是吸收了CO拉伸振动的双重峰,在相关场分裂的背景下对此进行了讨论。缺乏超结构衍射峰的原因是该相中的高度取向紊乱根据LEED吸附等温线,已确定N_2的吸附等容热为1 1±3 kJ mol'。当覆盖率增加50%时,相IT为med表现出许多额外的衍射斑点。将其分配给其中第二层仅填充一半的双层。基于LEED实验,提出了一种结构模型,其中第二层的特征在于沿第二层的行增长[210]方向和垂直方向的高粗糙度。该模型可以解释所有实验观察到的主要特征。最后,进一步观察到三维固体的形成,该过程通过Stransky-Krastanov晶体3D团簇的生长而实现。偶极-偶极耦合方法中CO团簇红外光谱的模拟可以重现观察到的所有主要振动特征。

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