Lead iodide (PbI2) is a van der Waals layered semiconductor with a direct bandgap in its bulk form and a hexagonal layered crystalline structure. The recently developed PbI2 nanosheets have shown great promise for high-performance optoelectronic devices, including nanolasers and photodetectors. However, despite being widely used as a precursor for perovskite materials, the optical properties of PbI2 nanomaterials remain largely unexplored. Here, we determine the nonlinear optical properties of PbI2 nanosheets by utilising nonlinear microscopy as a non-invasive optical technique. We demonstrate the nonlinearity enhancement dependent on excitonic resonances, crystalline orientation, thickness, and influence of the substrate. Our results allow...
The electronic and optical properties of two-dimensional layered materials allow the miniaturization...
Solution‐processed lead iodide (PbI2) governs the charge transport characteristics in the hybrid met...
Nanostructured lead halide perovskites are an attractive group of materials for highly efficient opt...
We demonstrate a nonlinear microscopy-based non-invasive technique for characterisation of PbI2 nano...
Two-dimensional (2D) semiconducting materials are particularly appealing for many applications. Alth...
Lead sulfide (PbS) microtowers on silicon substrates, having the physical properties of bulk PbS, ha...
Lead Iodide (PbI2) is a large bandgap 2D layered material that has potential for semi- conductor app...
Materials with large optical nonlinearity, especially in the visible spectral region, are in great d...
We identify nanoscale spatial distribution of PbI2 on the (FAPbI3)0.85(MAPbBr3)0.15 perovskite thin ...
The electronic and optical properties of two-dimensional layered materials allow the miniaturization...
Graphitic like layered materials exhibit intriguing electronic structures and thus the search for ne...
The electronic and optical properties of two-dimensional layered materials allow the miniaturization...
Optical measurements and first-principles calculations of few-layer lead iodide (PbI2) crystals are ...
Graphitic like layered materials exhibit intriguing electronic structures and thus the search for ne...
Fundmental comprehension of light-induced processes in perovskites are still scarce. One active deba...
The electronic and optical properties of two-dimensional layered materials allow the miniaturization...
Solution‐processed lead iodide (PbI2) governs the charge transport characteristics in the hybrid met...
Nanostructured lead halide perovskites are an attractive group of materials for highly efficient opt...
We demonstrate a nonlinear microscopy-based non-invasive technique for characterisation of PbI2 nano...
Two-dimensional (2D) semiconducting materials are particularly appealing for many applications. Alth...
Lead sulfide (PbS) microtowers on silicon substrates, having the physical properties of bulk PbS, ha...
Lead Iodide (PbI2) is a large bandgap 2D layered material that has potential for semi- conductor app...
Materials with large optical nonlinearity, especially in the visible spectral region, are in great d...
We identify nanoscale spatial distribution of PbI2 on the (FAPbI3)0.85(MAPbBr3)0.15 perovskite thin ...
The electronic and optical properties of two-dimensional layered materials allow the miniaturization...
Graphitic like layered materials exhibit intriguing electronic structures and thus the search for ne...
The electronic and optical properties of two-dimensional layered materials allow the miniaturization...
Optical measurements and first-principles calculations of few-layer lead iodide (PbI2) crystals are ...
Graphitic like layered materials exhibit intriguing electronic structures and thus the search for ne...
Fundmental comprehension of light-induced processes in perovskites are still scarce. One active deba...
The electronic and optical properties of two-dimensional layered materials allow the miniaturization...
Solution‐processed lead iodide (PbI2) governs the charge transport characteristics in the hybrid met...
Nanostructured lead halide perovskites are an attractive group of materials for highly efficient opt...