4.8 Article

Effect of sodium acetate additive in successive ionic layer adsorption and reaction on the performance of CdS quantum-dot-sensitized solar cells

Journal

JOURNAL OF POWER SOURCES
Volume 325, Issue -, Pages 706-713

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jpowsour.2016.06.095

Keywords

Sodium acetate; Cadmium sulfide; Quantum-dot-sensitized solar cell; Deposition rate; Ionic exchange

Funding

  1. Ministry of Science and Technology (MOST) of Taiwan [MOST 103-2221-E-006-248-MY3, 104-2119-M-006-003, 105-2623-E-006-011-ET]
  2. Headquarters of University Advancement at the National Cheng Kung University - Ministry of Education
  3. Hsing Tian Kong in Taiwan

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Sodium acetate (NaAc) is utilized as an additive in cationic precursors of the successive ionic layer adsorption and reaction (SILAR) process to fabricate CdS quantum-dot (QD)-sensitized photoelectrodes. The effects of the NaAc concentration on the deposition rate and distribution of QDs in mesoporous TiO2 films, as well as on the performance of CdS-sensitized solar cells are studied. The experimental results show that the presence of NaAc can significantly accelerate the deposition of CdS, improve the QD distribution across photoelectrodes, and thereby, increase the performance of solar cells. These results are mainly attributed to the pH-elevation effect of NaAc to the cationic precursors which increases the electrostatic interaction of the TiO2 film to cadmium ions. The light-to-energy conversion efficiency of the CdS-sensitized solar cell increases with increasing concentration of the NaAc and approaches a maximum value (3.11%) at 0.05 M NaAc. Additionally, an ionic exchange is carried out on the photo electrode to transform the deposited CdS into CdS1-xSex ternary QDs. The light-absorption range of the photoelectrode is extended and an exceptional power conversion efficiency of 4.51% is achieved due to this treatment. (C) 2016 Elsevier B.V. All rights reserved.

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