首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Electrochemically created highly surface roughened Ag nanoplate arrays for SERS biosensing applications
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Electrochemically created highly surface roughened Ag nanoplate arrays for SERS biosensing applications

机译:电化学创建的高度表面粗糙化的Ag纳米板阵列,用于SERS生物传感应用

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Highly surface-roughened Ag nanoplate arrays are fabricated using a simple electrodeposition and in situ electrocorrosion method with inorganic borate ions as capping agent. The electrocorrosion process is induced by a change in the local pH value during the electrochemical growth, which is used to intentionally carve the electrodeposited structures. The three dimensionally arranged Ag nanoplates are integrated with substantial surface-enhanced Raman scattering (SERS) hot spots and are free of organic contaminations widely used as shaping agents in previous works, making them excellent candidate substrates for SERS biosensing applications. The SERS enhancement factor of the rough Ag nanoplates is estimated to be >10~9. These Ag nanoplate arrays are used for SERS-based analysis of DNA hybridization monitoring, protein detection, and virus differentiation without any additional surface modifications or labelling. They all exhibit an extremely high detection sensitivity, reliability, and reproducibility.
机译:使用简单的电沉积和原位电腐蚀方法,以无机硼酸根离子作为封端剂,可以制造出高度表面粗糙的Ag纳米板阵列。电腐蚀过程是由电化学生长过程中局部pH值的变化引起的,该变化用于有意雕刻电沉积结构。这三种尺寸排列的Ag纳米板集成了实质性的表面增强拉曼散射(SERS)热点,并且没有在以前的工作中广泛用作成形剂的有机污染物,使其成为SERS生物传感应用的极佳候选衬底。粗糙的Ag纳米板的SERS增强因子估计为> 10〜9。这些Ag纳米板阵列可用于基于SERS的DNA杂交监测,蛋白质检测和病毒分化分析,而无需进行任何其他表面修饰或标记。它们都具有极高的检测灵敏度,可靠性和可重复性。

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