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Au@Cu Nanoarrays with Uniform Long-Range Ordered Structure: Synthesis and SERS Applications

机译:具有均匀长程有序结构的Au @ Cu纳米阵列:合成和SERS应用

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摘要

The nanostructures with uniform long-range ordered structure are of crucial importance for performance standardization of high-quality surface-enhanced Raman scattering (SERS) spectra. In this paper, we described the fabrication and SERS properties of Au decorated Cu (Au@Cu) nanoarrays. The Cu nanoarrays with uniform long-range ordered structure were first synthesized by in-situ electrochemistry assembly on insulated substrate. The Cu nanoarrays can reach a size of centimeters with strictly periodic nano-microstructure, which is beneficial for the production and performance standardization of SERS substrates. Then Au nanoparticals were decorated on the Cu nanoarrays by galvanic reaction without any capping agent. The obtained Au@Cu nanoarrays exhibit excellent SERS activity for 4-Mercaptopyridine, and the sensitivity limit is as low as 10−8 M. Therefore, this facile route provides a useful platform for the fabrication of SERS substrates based on nano ordered arrays.
机译:具有均匀的长程有序结构的纳米结构对于高质量表面增强拉曼散射(SERS)光谱的性能标准化至关重要。在本文中,我们描述了Au装饰的Cu(Au @ Cu)纳米阵列的制备和SERS特性。首先通过在绝缘基板上原位电化学组装合成具有均匀长程有序结构的Cu纳米阵列。具有严格周期性的纳米微结构的Cu纳米阵列可以达到厘米的大小,这对于SERS衬底的生产和性能标准化是有益的。然后在没有任何封端剂的情况下通过电流反应在铜纳米阵列上装饰金纳米粒子。获得的Au @ Cu纳米阵列对4-巯基吡啶具有优异的SERS活性,灵敏度极限低至10 -8 M。因此,这种简便的方法为SERS底物的制备提供了有用的平台。基于纳米有序阵列。

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