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首页> 外文期刊>Sensors and Actuators >Visible-light-driven charge transfer to significantly improve surface-enhanced Raman scattering (SERS) activity of self-cleaning TiO_2/Au nanowire arrays as highly sensitive and recyclable SERS sensor
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Visible-light-driven charge transfer to significantly improve surface-enhanced Raman scattering (SERS) activity of self-cleaning TiO_2/Au nanowire arrays as highly sensitive and recyclable SERS sensor

机译:可见光驱动的电荷转移可显着提高自清洁TiO_2 / Au纳米线阵列作为高灵敏度和可回收SERS传感器的表面增强拉曼散射(SERS)活性

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摘要

We apply a facile photoreduction deposition strategy to grow Au nanoparticles (NPs) on the surfaces of TiO2 nanowire arrays (TiO2/Au NWAs) as a Raman sensitive substrate. The fabricated TiO2/Au NWAs can be used as a highly sensitive and recyclable SERS sensor for detecting the rhodamine 6 G (R6 G) molecules with a concentration as low as 10(-9) M. Moreover, when irradiated with UV light, the SERS sensor with high sensitivity can be fully reproduced due to the superior self-cleaning capability of the substrate. By a comparative study on the SERS activities of R6 G molecules over the substrates of pure TiO2 NWAs, pure Au NPs and TiO2/Au NWAs, as well as the photoresponse performance of pure TiO2 and TiO2/Au NWAs under visible light illumination, we provide an illuminating insight into enhanced mechanism of SERS activity for TiO2/Au NWAs. The photoresponse performances and SERS activities provide experimental evidence that enhanced SERS activity of TiO2/Au NWAs is ascribed to the efficient charge transfer among Au, TiO2 and R6 G. This work throws a new light on enhanced mechanism for SERS activity of semiconductoroble-metal substrates, which are expected to find potential applications to fabricate highly sensitive SERS sensors for the detection of analytes.
机译:我们应用一种简便的光还原沉积策略,在作为拉曼敏感衬底的TiO2纳米线阵列(TiO2 / Au NWAs)的表面上生长金纳米颗粒(NP)。制成的TiO2 / Au NWA可用作高度灵敏且可回收的SERS传感器,用于检测浓度低至10(-9)M的若丹明6 G(R6 G)分子。此外,在用紫外线照射时,由于基板具有出色的自清洁能力,因此可以完全复制具有高灵敏度的SERS传感器。通过对纯TiO2 NWA,纯Au NP和TiO2 / Au NWA底物上R6 G分子的SERS活性进行比较研究,以及在可见光照射下,纯TiO2和TiO2 / Au NWA的光响应性能,我们提供对TiO2 / Au NWAs的SERS活性增强机理具有启发性的见解。光响应性能和SERS活性提供了实验证据,表明TiO2 / Au NWAs增强的SERS活性归因于Au,TiO2和R6 G之间的有效电荷转移。这项工作为增强半导体/贵金属的SERS活性的机理提供了新的思路。金属基材,有望在制造用于检测分析物的高灵敏度SERS传感器方面找到潜在的应用。

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