Msrg (1)

Menny Shalom

Senior Academic

Design of injection and recombination in quantum dot sensitized solar cells

Eva M. Barea, Menny Shalom, Sixto Giménez, Idan Hod, Iván Mora-Seró, Arie Zaban, Juan Bisquert

Semiconductor Quantum Dots (QDs) currently receive widespread attention for the development of photovoltaic devices due to the possibility of tailoring their optoelectronic properties by the control of size and composition. Here we show that it is possible to design both injection and recombination in QD sensitized solar cells (QDSCs) by the appropriate use of molecular dipoles and conformal coatings. QDSCs have been manufactured using mesoporous TiO 2 electrodes coated with "in situ" grown CdSe semiconductor nanocrystals by chemical bath deposition (CBD). Surface modification of the CdSe sensitized electrodes by conformal ZnS coating and grafting of molecular dipoles (DT) has been explored to both increase the injection from QDs into the TiO2 matrix and reduce the recombination of the QD sensitized electrodes. Different sequences of both treatments have been tested aiming at boosting the energy conversion efficiency of the devices. The obtained results showed that the most favorable sequence of the surface treatment (DT+ZnS) led to a dramatic 600% increase of photovoltaic performance compared to the reference electrode (without modification): Voc = 0.488 V, jsc = 9.74 mA/cm2, FF = 0.34, and efficiency = 1.60% under full 1 sun illumination. The measured photovoltaic performance was correlated to the relative position of the CdSe conduction band (characterized by surface photovoltage measurements) and TiO2 conduction band (characterized by the chemical capacitance, Cμ) together with recombination resistance, Rrec.

Publication language English
Pages 6834-6839
Journal Journal of the American Chemical Society
Volume 132
Issue number 19
Publication status Published - 19.05.2010

ASJC Scopus subject areas

Catalysis
General Chemistry
Biochemistry
Colloid and Surface Chemistry

Sustainable Development Goals

SDG 7 - Affordable and Clean Energy
Access to Document
10.1021/ja101752d
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Link to publication in Scopus