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Modification of the p-GaP(001) work function by surface dipole bonds formed in sulfide solution

机译:通过在硫化物溶液中形成的表面偶极键改性P-GAP(001)工作功能

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Modification of the surface chemical composition and electronic structure of the native-oxide-covered p-GaP(001) surface by treatment with sulfide solution is studied by high-resolution synchrotron photoemission spectroscopy (SXPS) and reflectance anisotropy spectroscopy (RAS). Treatment of the p-GaP(001) surface with a solution of ammonium sulfide in 2-propanol causes removal of the native oxide layer and formation of a passivating layer consisting mainly of gallium sulfides and sulfates. The latter species are formed due to oxidation of sulfides with hydroxyl groups existing in the solution. After such a treatment the downward surface band bending of about 0.5 eV remains essentially unaffected, while the electronic work function increases by 0.6 eV indicating modification of the surface dipole. As a result, the valence band maximum at the surface shifts to 5.6 eV. In reflectance anisotropy spectra the surface dipole modification produces an essential increase of the anisotropy signal in the spectral region of the direct optical transition point E-1 indicating considerable increase of the near-surface electric field. This dipole-induced near-surface electric field remains essentially unchanged on air exposure of the sulfur-treated p-GaP(001) surface for at least 6 months.
机译:通过高分辨率同步调节光学激发谱(SXPS)和反射各向异性光谱(RAS)通过用硫化物溶液处理通过用硫化物溶液治疗来改变天然氧化物覆盖的P-GAP(001)表面的电子结构。用2-丙醇中的硫化铵溶液处理p-Gap(001)表面,导致除去天然氧化物层并形成主要由硫化硫化物和硫酸盐组成的钝化层。由于溶液中存在的羟基氧化而形成后一种物质。在这样的处理之后,约0.5eV的向下表面带弯曲仍然基本上不受影响,而电子工作函数增加0.6eV表示表面偶极物的修改。结果,表面频带在表面偏移到5.6eV。在反射率各向异性光谱中,表面偶极改性在直接光学过渡点E-1的光谱区域中产生各向异性信号的基本增加,其指示近表面电场的相当大增加。该偶极诱导的近表面电场在硫处理的P-GAP(001)表面的空气暴露至少6个月内基本上不变。

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