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EFFICIENT COUNTER ELECTRODE FOR QUANTUM DOT SENSITIZED SOLAR CELLS USING p-TYPE PbS@ REDUCED GRAPHENE OXIDE COMPOSITE

Nanoscale Advances [2024]
Huu Phuc Dang, Ha Thanh Tung, Nguyen Thi My Hanh, Nguyen Thuy Kieu Duyen, Vo Thi Ngoc Thuy, Nguyen Thi Hong Anh, Hieu Van Le
ABSTRACT

This study developed a novel PbS-rGO composite counter electrode to enhance the performance of quantum dot-sensitized solar cells (QDSSCs). The composite was synthesized via a hydrothermal method by anchoring PbS nanocubes onto reduced graphene oxide (rGO) sheets. The effect of mass ratios of rGO to PbS (0.0, 0.1, 0.3, and 0.6) to a power conversion efficiency (PCE) was investigated. The optimized rGO-PbS (0.03) composite achieved a power conversion efficiency of 5.358%, Voc of 0.540 V, Jsc of 21.157 mA/cm², and FF of 0.516. The rGO framework provides an interconnected conductive network that facilitates efficient charge transport, reduces the charge transfer resistance, and improves the overall conductivity. Electrochemical analyses confirmed the superior electrocatalytic activity of the composite in reducing the Sn²⁻/S²⁻ redox couple. The unique band alignment between rGO and PbS optimized the electron transfer pathways. The hierarchical structure increased the surface area and light absorption, enabling a more effective charge transfer at the electrode-electrolyte interface.

MATERIALS

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