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Novel Hybrid Ligands for Passivating Pb S Colloidal Quantum Dots to Enhance the Performance of Solar Cells
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  • 分类:O641.4[理学—物理化学;理学—化学] TM914.4[电气工程—电力电子与电力传动]
  • 作者机构:State Key Laboratory of Luminescent Materials & Devices,Institute of Polymer Optoelectronic Materials & Devices,South China University of Technology, Siyuan Laboratory, Department of Physics, Jinan University
  • 相关基金:financial support of the National Natural Science Foundation of China(No.91333206;61274062;and11204106);National Science Foundation for Distinguished Young Scholars of China(Grant No.51225301);Guangdong Province Natural Science Fund(No.2014A030313257)
中文摘要:

We developed novel hybrid ligands to passivate Pb S colloidal quantum dots(CQDs),and two kinds of solar cells based on as-synthesized CQDs were fabricated to verify the passivation effects of the ligands.It was found that the ligands strongly affected the optical and electrical properties of CQDs,and the performances of solar cells were enhanced strongly.The optimized hybrid ligands,oleic amine/octyl-phosphine acid/Cd Cl2improved power conversion efficiency(PCE)to much higher of 3.72%for Schottky diode cell and 5.04%for p–n junction cell.These results may be beneficial to design passivation strategy for low-cost and high-performance CQDs solar cells.

英文摘要:

We developed novel hybrid ligands to passivate PbS colloidal quantum dots (CQDs), and two kinds of solar cells based on as-synthesized CQDs were fabricated to verify the passivation effects of the ligands. It was found that the ligands strongly affected the optical and electrical properties of CQDs, and the performances of solar cells were enhanced strongly. The optimized hybrid ligands, oleic amine/octyl-phosphine acid/CdCl2 improved power conversion efficiency (PCE) to much higher of 3.72 % for Schottky diode cell and 5.04 % for p-n junction cell. These results may be beneficial to design passivation strategy for low-cost and high-performance CQDs solar cells.

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