Excess PbBr2 Passivation of Large PbS Colloidal Quantum Dots to Reduce Dark-Current Density for Near-Infrared Detection

PHYSICAL REVIEW APPLIED(2023)

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摘要
Small-size PbS colloidal quantum dots (CQDs) have achieved excellent performance in photoelectric conversion devices through the ligand-exchange method of mixed lead-halide passivation. However, with the increase of PbS CQD diameter, the proportion of (100) facets on the CQD surface increases and the original proportion of mixed lead-halide ligand cannot passivate (100) facets completely, which will introduce deep defects and deteriorate device performance. Here, we demonstrate an excessive PbBr2 concentration ligand strategy to sufficiently passivate large-size PbS CQDs with an absorption peak at 1300 nm. The first-principles calculation results suggest that Br- can passivate (100) facets more efficiently compared with I-. With the increase of PbBr2 concentration (0-0.464 mmol/mL), both optical and electrical measurements imply that defects are effectively passivated, while carrier lifetime increases and dark-current density decreases. Finally, a device with specific detectivity of 5.22 x 1012 Jones is obtained. This passivation strategy can also be used in other large-size PbS CQDs (diameter >4 nm) to realize a better device performance.
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