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Surfactant-free galvanic replacement for synthesis of raspberry-like silver nanostructure pattern with multiple hot-spots as sensitive and reproducible SERS substrates

机译:不含表面活性剂的电化学替代物,用于合成具有多个热点的树莓状银纳米结构图案,作为敏感且可重现的SERS底物

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Using a galvanic replacement (GR) reaction in the absence of surfactant as a stabilizer, we report a robust synthesis of raspberry-like silver nanostructure pattern with multiple "hot-spots". First, uniform copper nanodisk patterns were generated on Pt layer via nano imprint lithography and Ag+ ions were added for reaction. The Ag+ ions selectively oxidized Cu atoms, because of the reduction potential variance. The uncovered Cu surface promoted contact between Cu atoms and Ag+ ions to synthesize a sufficient quantity of silver nanostructures on copper nanodisks to generate multiple strong "hot-spots". However, coating the copper nanodisk with surfactant impeded the progress of the GR reaction and failed to synthesize "hot-spots". Due to metal bonding between the metal nanostructures and Pt layer, the synthesized silver nanostructure pattern preserved mono-dispersity and stability. We demonstrated applications for rapid detection of Rhodamine 6G (R6G) molecules by surface-enhanced Raman scattering spectroscopy (SERS) with low detection limit (10(-12) M) and excellent signal uniformity (RSD < 8.3 +/- 1.3%). Since surfactants have been considered as important pre-requisites in GR reactions for stability of nanostructures, the findings reported here offer a new opportunity for synthesizing various kinds of metal nanostructures via GR and expanding their applications.
机译:我们在没有表面活性剂作为稳定剂的情况下使用电流置换(GR)反应,我们报道了具有多个“热点”的树莓状银纳米结构图案的稳健合成。首先,通过纳米压印光刻在Pt层上生成均匀的铜纳米盘图案,并添加Ag +离子进行反应。由于还原电位的变化,Ag +离子选择性氧化了铜原子。未发现的铜表面促进了铜原子与Ag +离子之间的接触,从而在铜纳米盘上合成了足够数量的银纳米结构,从而产生了多个强“热点”。然而,用表面活性剂涂覆铜纳米盘阻碍了GR反应的进行,并且不能合成“热点”。由于金属纳米结构和Pt层之间的金属键合,合成的银纳米结构图案保留了单分散性和稳定性。我们展示了具有低检测限(10(-12)M)和出色的信号均匀性(RSD <8.3 +/- 1.3%)的表面增强拉曼散射光谱(SERS)快速检测若丹明6G(R6G)分子的应用。由于表面活性剂被认为是GR反应中纳米结构稳定的重要先决条件,因此本文报道的发现为通过GR合成各种金属纳米结构并扩展其应用提供了新的机会。

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