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Optimization of ZnO Nanorod-Based Surface Enhanced Raman Scattering Substrates for Bio-Applications

机译:基于ZnO纳米棒的表面增强拉曼散射基底的生物应用优化

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摘要

Nanorods based on ZnO for surface enhanced Raman spectroscopy are promising for the non-invasive and rapid detection of biomarkers and diagnosis of disease. However, optimization of nanorod and coating parameters is essential to their practical application. With the goal of establishing a baseline for early detection in biological applications, gold-coated ZnO nanorods were grown and coated to form porous structures. Prior to gold deposition, the grown nanorods were 30–50 nm in diameter and 500–600 nm in length. Gold coatings were grown on the nanorod structure to a series of thicknesses between 100 and 300 nm. A gold coating of 200 nm was found to optimize the Rhodamine B model analyte signal, while performance for rat urine depended on the biomarkers to be detected. These results establish design guidelines for future use of Au-ZnO nanorods in the study and early diagnosis of inflammatory diseases.
机译:用于表面增强拉曼光谱的基于ZnO的纳米棒有望用于生物标记物的非侵入性快速检测和疾病诊断。但是,优化纳米棒和涂层参数对于它们的实际应用至关重要。为了建立用于生物学应用中的早期检测的基线,生长了镀金的ZnO纳米棒,并对其进行了涂覆以形成多孔结构。在金沉积之前,生长的纳米棒的直径为30–50 nm,长度为500–600 nm。金涂层在纳米棒结构上生长至100至300 nm之间的一系列厚度。发现200 nm的金涂层可优化若丹明B模型分析物信号,而大鼠尿液的性能则取决于要检测的生物标志物。这些结果为将来在炎性疾病的研究和早期诊断中使用Au-ZnO纳米棒建立了设计指南。

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