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Random networks of core-shell-like Cu-Cu2O/CuO nanowires as surface plasmon resonance-enhanced sensors

机译:核-壳状Cu-Cu2O / CuO纳米线的随机网络作为表面等离子体共振增强传感器

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摘要

The rapid oxide formation on pristine unprotected copper surfaces limits the direct application of Cu nanomaterials in electronics and sensor assemblies with physical contacts. However, it is not clear whether the growing cuprous (Cu2O) and cupric oxides (CuO) and the formation of core-shell-like Cu-Cu2O/CuO nanowires would cause any compromise for non-contact optical measurements, where light absorption and subsequent charge oscillation and separation take place such as those in surface plasmon-assisted and photocatalytic processes, respectively. Therefore, we analyze how the surface potential of hydrothermally synthetized copper nanowires changes as a function of time in ambient conditions using Kelvin probe force microscopy in dark and under light illumination to reveal charge accumulation on the nanowires and on the supporting gold substrate. Further, we perform finite element modeling of the optical absorption to predict plasmonic behavior of the nanostructures. The results suggest that the core-shell-like Cu-Cu2O/CuO nanowires may be useful both in photocatalytic and in surface plasmon-enhanced processes. Here, by exploiting the latter, we show that regardless of the native surface oxide formation, random networks of the nanowires on gold substrates work as excellent amplification media for surface-enhanced Raman spectroscopy as demonstrated in sensing of Rhodamine 6G dye molecules.
机译:在未经保护的原始铜表面上快速形成氧化物,限制了铜纳米材料在具有物理接触的电子产品和传感器组件中的直接应用。然而,尚不清楚生长中的亚铜(Cu2O)和氧化铜(CuO)以及核-壳状Cu-Cu2O / CuO纳米线的形成是否会对非接触式光学测量造成任何损害,因为在这种情况下,光吸收和后续的电荷振荡和分离分别发生在表面等离激元辅助和光催化过程中。因此,我们使用开尔文探针力显微镜在黑暗和光线照射下,分析环境条件下水热合成铜纳米线的表面电势如何随时间变化,以揭示纳米线和支撑金基底上的电荷积累。此外,我们对光吸收进行有限元建模,以预测纳米结构的等离子体行为。结果表明,核壳状的Cu-Cu2O / CuO纳米线可能在光催化和表面等离激元增强过程中都有用。在这里,通过利用后者,我们显示出,不管天然表面氧化物的形成如何,金基质上纳米线的无规网络都可以用作表面增强拉曼光谱的出色扩增介质,如在罗丹明6G染料分子的感测中所证明的。

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