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Application of mass fabricated silicon-based gold transducers for amperometric biosensors

机译:大规模制造的硅基金传感器在安培生物传感器中的应用

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摘要

The backside contact, silicon-based transducers with vacuum-deposited gold layer (BSC) are evaluated as the base for electrochemical biosensors construction. Their comparison with commercially available transducers with screen printed gold and traditional gold disc electrode is reported. To determine the advantages and disadvantages of each of gold surfaces mentioned above, the 6-(ferrocenyl)-hexanethiol was used as the indicator. The results revealed the usefulness of BSC chips for the formation of stable self-assembled monolayers (SAMs). After the preliminary analysis, the SAM of thiol-ssDNA was formed on the BSC transducers as recognition layer. The electrochemical analysis in methylene blue solution was carried out after ssDNA immobilization and DNA-DNA hybridization. It is shown that prepared sensors are able to recognize complementary DNA sequence, based on the change in height and the potential shifts of reduction peaks of methylene blue. Obtained results are in full agreement with literature data. The compact size of silicone-based transducers allows to significantly reduce the required volume of tested solutions.
机译:具有真空沉积金层(BSC)的背面接触式硅基换能器被评估为电化学生物传感器构造的基础。据报道,它们与带有丝网印刷金和传统金盘电极的市售换能器进行了比较。为了确定上述每个金表面的优缺点,将6-(二茂铁基)-己硫醇用作指示剂。结果表明,BSC芯片对于形成稳定的自组装单分子膜(SAM)很有用。经过初步分析,在BSC换能器上形成了巯基-ssDNA的SAM作为识别层。 ssDNA固定化和DNA-DNA杂交后,在亚甲基蓝溶液中进行电化学分析。结果表明,制备的传感器能​​够根据高度变化和亚甲基蓝还原峰的电位变化识别互补的DNA序列。获得的结果与文献数据完全一致。有机硅基传感器的紧凑尺寸可显着减少所需测试溶液的体积。

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