4.4 Article

Study of the surface properties of ZnO nanocolumns used for thin-film solar cells

期刊

BEILSTEIN JOURNAL OF NANOTECHNOLOGY
卷 8, 期 -, 页码 446-451

出版社

BEILSTEIN-INSTITUT
DOI: 10.3762/bjnano.8.48

关键词

3-dimensional solar cells; hydrothermal growth; optical spectroscopy; photothermal deflection spectroscopy; plasma treatment; X-ray photoelectron spectroscopy; ZnO nanocolumns

资金

  1. Czech Science Foundation [16-10429J]
  2. European Regional Development Funds through the Operational Programme Prague - Competitiveness [CZ.2.16/3.1.00/21545]

向作者/读者索取更多资源

Densely packed ZnO nanocolumns (NCs), perpendicularly oriented to the fused-silica substrates were directly grown under hydrothermal conditions at 90 degrees C, with a growth rate of around 0.2 mu m/h. The morphology of the nanostructures was visualized and analyzed by scanning electron microscopy (SEM). The surface properties of ZnO NCs and the binding state of present elements were investigated before and after different plasma treatments, typically used in plasma-enhanced CVD solar cell deposition processes, by X-ray photoelectron spectroscopy (XPS). Photothermal deflection spectroscopy (PDS) was used to investigate the optical and photoelectrical characteristics of the ZnO NCs, and the changes induced to the absorptance by the plasma treatments. A strong impact of hydrogen plasma treatment on the free-carrier and defect absorption of ZnO NCs has been directly detected in the PDS spectra. Although oxygen plasma treatment was proven to be more efficient in the surface activation of the ZnO NC, the PDS analysis showed that the plasma treatment left the optical and photoelectrical features of the ZnO NCs intact. Thus, it was proven that the selected oxygen plasma treatment can be of great benefit for the development of thin film solar cells based on ZnO NCs.

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