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In situ synthesis of hybrid zinc oxide-silver nanoparticle arrays as a powerful active platform for surface-enhanced Raman scattering detection

机译:原位合成杂交氧化锌 - 银纳米粒子阵列,作为表面增强拉曼散射检测的强大有源平台

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Micro-structured molecular semiconductor film-based surface-enhanced Raman scattering (SERS) probes are an important analytical tool for both fundamental and technological research. This study proposed a novel zinc oxide (ZnO)-based, three-dimensional (3D) semiconductor nanoflower (NF) superstructure probe with unique physicochemical properties, including engineered hotspots allowing an arrangement of metallic nanoparticles (NPs), as a means to analyse target molecules. By changing the size, high-density hotspots distributed throughout the nanopetal-like ‘nanorods’ of ZnO supports. When used to analyse crystal violet (CV), there were synergistic effects of silver (Ag), ZnO, and CV molecules in the synthesised ZnONFs@Ag-CV SERS system. The SERS results revealed that the plasmonic surfaces of the self-assembled hotspots on the 3D ZnO superstructures provided effective molecular interactions between the ZnONFs@Ag platform and the Raman probe molecule. These interactions influenced the configuration and detection performance of SERS. Moreover, the performance was closely associated with enhancement of the electromagnetic mechanism and the charge transfer contribution in the platform between the semiconductor, metallic NPs, and the analyte molecules. As a result, the characteristic CV peaks were obvious even at a low concentration of 10-10 M. In a mixture of two probes, the ZnONFs@Ag chip provided an outstanding selectivity in the quantitative and qualitative evaluation of each target molecule at low concentrations. The synthesised 3D ZnONFs@Ag heterostructure chip possesses excellent practical reproducibility and represents a promising candidate for chemical and biomedical inspection.
机译:微结构化分子半导体膜的表面增强拉曼散射(SERS)探针是基础和技术研究的重要分析工具。本研究提出了一种基于新型氧化锌(ZnO)的三维(3D)半导体纳米辊(NF)上部结构探针,其具有独特的物理化学性质,包括允许金属纳米颗粒(NPS)排列的工程化热点,作为分析靶的手段分子。通过改变ZnO支持的整个纳米释放的“纳米棒”的尺寸,高密度热点。当用于分析晶体紫(CV)时,合成Znonfs @ Ag-CV SERS系统中的银(Ag),ZnO和CV分子存在协同作用。 SERS结果表明,3D ZnO上部结构上的自组装热点的等离子体表面提供了Znonfs @ Ag平台和拉曼探针分子之间的有效分子相互作用。这些互动影响了SERS的配置和检测性能。此外,性能与电磁机构的增强和半导体,金属NPS和分析物分子之间的平台中的电荷转移贡献密切相关。结果,即使在两〜10米的低浓度为10-10米的低浓度下,特征CV峰也是明显的。在两个探针的混合物中,Znonfs @ Ag芯片在低浓度下的定量和定性评价中提供了出色的选择性和定性评估。合成的3D Znonfs @ Ag异质结构芯片具有出色的实用再现性,并且代表了化学和生物医学检查的有希望的候选者。

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