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◆ Nanomaterials (Basel, Switzerland)2026-07-24

Quantum Dot Strategies Toward Performance Improvement of Perovskite Solar Cells.

Weixuan Liu, Chuangping Liu, Yu Ouyang, Qinghua Cao, Uliana Goga, Xiaoli Zhang, Smirnov Aliaksandr, Hui Liu

原始摘要(英文原文)· Original abstract
Perovskite solar cells (PSCs) have reached certified efficiencies exceeding 26%, yet the gap to the Shockley-Queisser limit and insufficient operational stability remain key obstacles to commercialization. Quantum dots (QDs) offer a versatile platform to address both challenges through their size-tunable bandgaps, high photoluminescence yields, and solution processability. This review systematically examines four QD integration strategies in PSCs: transport layer modification, active layer doping, UV conversion layers, and tandem sub-cells. The underlying mechanisms-including defect passivation, energy-level engineering, crystallization control, and ion migration suppression-are critically compared across these approaches. Despite significant advances, challenges persist, including the ligand-charge transport trade-off, the environmental toxicity of Pb/Cd-containing QDs, poor reproducibility, and the absence of standardized stability testing protocols. By providing a mechanism-oriented assessment across all device components, this review offers a clear framework for selecting appropriate QD strategies and identifies priority research directions. The perspective of QD strategies in this review provides a useful and significant reference for approaching the theoretical PCE limits of single-junction PSCs by reducing non-radiative recombination and improving light utilization, while QD-based tandem architectures offer a viable route toward surpassing the single-junction Shockley-Queisser limit.
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Quantum Dot Strategies Toward Performance Improvement of Perovskite Solar Cells. — 科研速览 Science Skim