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Adsorption and Cation Exchange Behavior of Zinc Sulfide (ZnS) on Mesoporous TiO2 Film and Its Applications to Solar Cells

DOI:10.1021/acs.langmuir.0c00095 期刊:Langmuir 出版年份:2020 更新时间:2025-09-23 15:21:01
摘要: Zinc sulfide (ZnS) was deposited onto the surface of mesoporous TiO2 film by a typical successive ionic layer adsorption and reaction (SILAR) process. By inducing a spontaneous cation exchange between ZnS and a target cation (Pb2+, Cu2+, Ag+, or Bi3+) dissolved in chemical bath when they are in contact, it was demonstrated successfully that white translucent ZnS on the substrate could be changed to brown-colored new metal chalcogenides and the amount of ZnS deposited originally by different conditions could be compared in a qualitative way with the degree of the color change. By utilizing this simple but effective process, the evolution of well-known ZnS passivation layer prepared from different chemical baths in quantum dot (QD)-sensitized solar cells could be tracked visually via checking the degree of color change of TiO2/ZnS electrodes after the induced specific cation exchange. When applied to representative CdS QD-sensitized solar cells, it was revealed clearly how the different degree and rate of ZnS deposition could affect the overall power conversion efficiency while finding an optimized passivation layer over TiO2/CdS electrode. Acetate anion-coupled Zn2+ source was observed to give a much faster deposition of ZnS passivation layer than nitrate anion one due to its higher pH-induced more favorable adsorption of Zn2+ on the surface of TiO2. As another useful application of the ZnS-based cation exchange, as-deposited ZnS was used as a template for preparing a more complex metal chalcogenide onto mesoporous TiO2 film. The ZnS-derived Sb2S3-sensitized electrode showed a promising initial result of over 1.0 % overall power conversion efficiency with a very thin ZrO2 passivation layer between TiO2 and Sb2S3.
作者: Seul-Yi Lee,Hyo Joong Lee,So Min Yoo
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Investigating the adsorption and cation exchange behavior of zinc sulfide (ZnS) on mesoporous TiO2 film and its applications to solar cells.

The study successfully demonstrated the use of ZnS as a template for preparing other metal chalcogenides through cation exchange, offering a simple and effective method for tracking ZnS deposition and optimizing passivation layers in QD-sensitized solar cells. The findings provide valuable insights into the role of chemical bath composition in ZnS deposition and its impact on solar cell performance.

The study is limited by the qualitative nature of the colorimetric determination of ZnS deposition and the specific conditions under which the cation exchange processes were tested.

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