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Broadband Optical Enhancement in Strongly Coupled Perovskite-PbS Nanostructures
Tal Binyamin1, Rivka Elboher1, Anat Shvets1
1Institute of Chemistry, Casali Center for Applied Chemistry, The Hebrew University of Jerusalem, 91904 Jerusalem, Israel.
Abstract:
Extending the absorbance range of perovskite nanoparticles to the near-infrared (NIR) region is essential for expanding their optoelectronic applications. In this study, PbS nanoparticles (NPs) were conjugated with CsPbBr3 NPs via a PbSO4 matrix, forming hybrid nanostructures with optical responses spanning from the visible to the NIR region achieving a total photoluminescence quantum yield (PLQY) of 66%. The PbSO4 matrix enables the formation of well-organized 1D nanorods, ensuring a consistent and close proximity between the two types of NPs. Temperature-dependent time-resolved photoluminescence measurements revealed efficient charge transfer from the CsPbBr3 NPs to the PbS NPs. Surface photovoltage spectroscopy and ambient photoemission spectroscopy were used to construct the energy-level diagram of this unique system, confirming the strong coupling between the two semiconductors. This hybrid approach offers a strategy to conjugate dissimilar semiconductors without the need for lattice matching.
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