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Edge Raman enhancement at layered PbI2 platelets induced by laser waveguide effect

机译:激光波导效应诱导的层状PbI2片状边缘拉曼增强

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As a two-dimensional (2D) layered semiconductor, lead iodide (PbI2) has been widely used in optoelectronics owing to its unique crystal structure and distinctive optical and electrical properties. A comprehensive understanding of its optical performance is essential for further application and progress. Here, we synthesized regularly shaped PbI2 platelets using the chemical vapor deposition method. Raman scattering spectroscopy of PbI2 platelets was predominantly enhanced when the laser radiated at the edge according to Raman mapping spectroscopy. Combining the outcome of polarized Raman scattering spectroscopy and finite-difference time domain simulation analysis, the Raman enhancement was proven to be the consequence of the enhancement effects inherent to the high refractive index contrast waveguide, which is naturally formed in well-defined PbI2 platelets. Because of the enlarged excited area determined by the increased propagation length of the laser in the PbI2 platelet formed waveguide, the total Raman enhancements are acquired rather than a localized point enhancement. Finally, the Raman enhancement factor is directly related to the thickness of the PbI2 platelet, which further confirms the waveguide-enhanced edge Raman. Our investigation of the optical properties of PbI2 platelets offers reference for potential 2D layered-related optoelectronic applications.
机译:碘化铅(PbI2)作为一种二维(2D)层状半导体,由于其独特的晶体结构和独特的光学和电学性能,在光电子学中得到了广泛的应用。全面了解其光学性能对于进一步的应用和进展至关重要。在这里,我们使用化学气相沉积法合成了规则形状的PbI2血小板。根据拉曼映射光谱,当激光在边缘辐射时,PbI2血小板的拉曼散射光谱主要增强。结合偏振拉曼散射光谱和时域有限差模拟分析的结果,拉曼增强被证明是高折射率对比波导固有的增强效应的结果,高折射率对比波导在明确的 PbI2 血小板中自然形成。由于激光在PbI2片状波导中传播长度的增加决定了激发面积的扩大,因此获得了总拉曼增强而不是局部点增强。最后,拉曼增强因子与PbI2片的厚度直接相关,进一步证实了波导增强边缘拉曼的成立。我们对PbI2血小板光学性质的研究为潜在的二维层状相关光电应用提供了参考。

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