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Au-nanoarray by nanosphere lithography sensors for Staphylococcus aureus 16S rRNA

机译:纳米球光刻传感器金纳米阵列用于金黄色葡萄球菌16S rRNA

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Nanopatterning of Au-nanoarray on an indium tin oxide (ITO) electrode using efficient and low-cost nanospheres lithography (NSL) is reported. Convective self-assembly of 500 nm polystyrene (PS) nanobeads was found to effectively provide a well-ordered monolayer template for Au deposition with the coverage of about 90% on ITO. A simple Au-nanoparticles (AuNPs) spin coating was performed. It is observed that AuNPs immobilized by spin-coating techniques tends to follow the contour of the spherical nanobeads instead of filling the gaps within them, therefore, a distinguished hexagonal ring of Au-nanoarray was generated after nanobeads etching. As used for electrochemical sensor of Staphyloccocus aureus 16S rRNA hybridization detection, this substrate resulted high effective surface area which subsequently gave an excellent limitation of detection (LOD) of 10 pM target DNA. Overall, we have demonstrated an integration of NSL and AuNPs spin-coating for a uniform and high troughput substrate fabrication for electrochemical biosensor development.
机译:报道了使用高效且低成本的纳米球光刻技术(NSL)在铟锡氧化物(ITO)电极上对金纳米阵列进行纳米构图。发现500 nm聚苯乙烯(PS)纳米珠的对流自组装可有效提供有序的用于Au沉积的单层模板,其在ITO上的覆盖率约为90%。进行了简单的金纳米粒子(AuNPs)旋涂。观察到,通过旋涂技术固定化的AuNPs趋向于遵循球形纳米珠的轮廓,而不是填充其中的间隙,因此,纳米珠蚀刻后会生成一个独特的Au-纳米阵列六角环。作为用于金黄色葡萄球菌16S rRNA杂交检测的电化学传感器,该底物产生了很高的有效表面积,从而为10 pM靶DNA的检测(LOD)提供了极好的限制。总体而言,我们已经展示了NSL和AuNPs旋涂的集成,可用于电化学生物传感器开发的均匀且高通量的基板制造。

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