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ACS Applied Materials & Interfaces

ACS Applied Materials & Interfaces

IF: 8.3
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PCBM Constructing Heterojunction for Efficient CsPbI3 Perovskite Quantum Dot Solar Cells

Published:10 December 2024 DOI: 10.1021/acsami.4c16982
Rui Han, Linrui Duan, Yuxing Xu, Lingxin Kong, Guiju Liu, Jian Ni, Jianjun Zhang

Abstract

CsPbI3 perovskite quantum dots (PQDs) have emerged as promising photovoltaic materials for third-generation solar cells, owing to their superior optoelectronic properties. Nevertheless, the performance of CsPbI3 PQD solar cells is primarily hindered by low carrier extraction efficiency, largely due to the insulative ligands. In this study, we introduced a semiconductor molecule, [6,6]-phenyl C61 butyric acid methyl ester (PCBM), onto the surfaces of CsPbI3 PQDs as surface ligands to enhance photogenerated charge extraction. The results indicate that PCBM accelerates carrier separation in CsPbI3 PQDs by forming a type II heterojunction, and also modulates the energy level of CsPbI3 PQDs by altering surface dipole moments. Additionally, we established an energy-level gradient alignment in the PCBM/CsPbI3 PQD heterojunction absorber layer, which was found to effectively promote carrier extraction and reduce carrier recombination loss in PQD solar cells. Ultimately, the PQD solar cells incorporating this novel structure achieved a power conversion efficiency of 14.23%, a significant improvement compared to 12.69% achieved by solar cells with a traditional structure, thus demonstrating the strong potential of this approach for high-performance PQD solar cells.

Substances (4)

Materials
Procduct Name CAS Molecular Formula Supplier Price
Acetonitrile 75-05-8 C2H3N 1022 suppliers $61180.00
Hexane 110-54-3 C6H14 847 suppliers $20.00-$5500.00
N-OCTANE 111-65-9 C8H18 302 suppliers $12.00-$2360.00
Titanium ethoxide 3087-36-3 C8H20O4Ti 253 suppliers $15.00-$4302.84

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