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Surface-enhanced Raman scattering on sandwiched structures with gallium telluride

机译:碲化镓夹层结构上的表面增强拉曼散射

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摘要

Two-dimensional crystals-based surface-enhanced Raman scattering (SERS) substrates are a research hot spot in the realm of chemistry and biology. Herein, a novel hybrid substrate based on AuNPs/GaTe/Au-film is proposed and fabricated for SERS activity. Finite-difference time-domain numerical simulations demonstrate that the plasmonic coupling in the hybrid structure, particularly the LSPs coupling of AuNPs and Au-film, promotes an enhanced electric field and consequently, greatly enhances the Raman activity. Impressively, the enhancement factor of 3 x 10(5) and the limiting detection concentration of 10(-14) M have been achieved for the rhodamine 6G molecules, which are equivalent to the best results achieved from the patterned graphene substrates. Due to its simple structure, cost-effectiveness, good uniformity, reproducibility, and stability, it is expected that such a SERS substrate will open up a new way toward the ultrasensitive detection of molecules.
机译:基于二维晶体的表面增强拉曼散射(SERS)衬底是化学和生物学领域的研究热点。本文提出并制备了一种基于AuNPs/GaTe/Au-film的新型SERS活性杂化衬底。时域有限差分数值模拟表明,杂化结构中的等离子体耦合,特别是AuNPs和Au-film的LSPs耦合,促进了增强的电场,从而大大增强了拉曼活性。令人印象深刻的是,罗丹明6G分子的增强因子为3 x 10(5)和极限检测浓度为10(-14)M,这与图案化石墨烯衬底的最佳结果相当。由于其结构简单、性价比高、均匀性好、重现性和稳定性好,预计这种SERS底物将为分子的超灵敏检测开辟一条新途径。

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