AI Article Synopsis

  • Researchers synthesized mesoporous Bi₂S₃ nanorods using a simple hydrothermal method without additives and tested their catalytic activity in dye-sensitized solar cells (DSCs).
  • Adding 9 wt% reduced graphene oxide (rGO) significantly boosted the performance, achieving a short-circuit current density of 15.33 mA cm(-2), an open-circuit voltage of 0.74 V, and a conversion efficiency of 6.91%.
  • This new Bi₂S₃ + rGO system offers a low-cost and efficient alternative to traditional Pt counter electrodes, marking the best performance for Bi₂S₃-based counter electrodes in DSCs to date.

Article Abstract

In this work, we report the synthesis of mesoporous Bi₂S₃ nanorods under hydrothermal conditions without additives, and investigated their catalytic activities as the CE in DSCs by I-V curves and tested conversion efficiency. To further improve their power conversion efficiency, we added different amounts of reduced graphene by simple physical mixing. With the addition of 9 wt% reduced graphene (rGO), the short-circuit current density, open-circuit voltage and fill factor were Jsc = 15.33 mA cm(-2), Voc = 0.74 V and FF = 0.609. More importantly, the conversion efficiency reached 6.91%, which is slightly inferior to the commercial Pt counter electrode (7.44%). Compared to the conventional Pt counter electrodes of solar cells, this new material has the advantages of low-cost, facile synthesis and high efficiency with graphene assistance. To the best of our knowledge, this Bi₂S₃ + 9 wt% rGO system has the best performance ever recorded in all Bi₂S₃-based CEs in the DSCs system.

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Source
http://dx.doi.org/10.1039/c4nr04274cDOI Listing

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