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Composition-adjustable Ag–Au substitutional alloy microcages enabling tunable plasmon resonance for ultrasensitive SERS

机译:可调节AG-AU取代合金显微装置,可调谐等离子体共振超敏SERS

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摘要

Engineering the surface plasmon resonance (SPR) properties is a critical issue for improving device performance in the fields of plasmonics, nanophotonics, optoelectronics, and electrochemistry. Here, we demonstrated a programmable manipulation of the surface plasmon resonance (SPR) effect using composition-adjustable Ag–Au substitutional alloy microcages (SAMCs) through a facile NaBH _(4) -cooperative galvanic replacement reaction. The SPR frequency of the Ag–Au SAMCs can be continuously and exquisitely manipulated without resonance damping or broadening via accurate adjustment of the elemental composition distribution at the perfect homogeneity on the atomic-level. Significantly, both the tunable SPR frequency and excellent chemical stability synergistically endow the hollow Ag–Au SAMCs with excellent SERS sensitivity and reproducibility, which lays a foundation for the realization of trace detection of thiram at an ultralow concentration of 1 × 10 ~(?12) M. This strategy is a promising candidate for efficient promotion of the SERS activity for metal-based substrates.
机译:工程表面等离子体共振(SPR)属性是改善野生化,纳米级,光电子和电化学领域的装置性能的关键问题。在这里,我们证明了使用组合可调节的Ag-Au取代合金显微数(SMC)通过容易NabH _(4) - 替换电催化反应的可编程操纵表面等离子体共振(SPR)效应。 AG-AU SAMCS的SPR频率可以连续,并且可以通过精确调节原子水平的完美均匀性的元素成分分布的精确调节来连续地和精致地操纵。显着性,可调SPR频率和优异的化学稳定性协同赋予空心AG-AU SAMC,具有优异的SERS敏感性和再现性,这为实现了1×10〜(?12的超级浓度的痕迹检测)M.该策略是有助于促进基于金属基质的SERS活动的有希望的候选者。

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