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Development of an optoelectronic nose based on surface plasmon resonance imaging with peptide and hairpin DNA for sensing volatile organic compounds

机译:基于表面等离子体共振成像的光电鼻与肽和发夹DNA进行感测挥发性有机化合物的光电鼻

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摘要

Nowadays, the analysis of volatile organic compounds (VOCs) is very important in various domains. In the last decades, electronic noses have emerged as promising alternatives to traditional analytical methods. Nevertheless, their wide use is still limited by their performances such as low selectivity. Herein, we developed an optoelectronic nose using virtually screened peptides and hairpin DNA (hpDNA) with improved selectivity as sensing materials and surface plasmon resonance imaging (SPRi) as the detection system. Thanks to the complementarity of their binding properties towards target VOCs, the obtained optoelectronic nose has very good selectivity, being able to discriminate not only between VOCs of different chemical families, but also VOCs of the same family with only 1-carbon difference. The combination of these sensing materials with SPRi is relevant for the development of optoelectronic nose with large sensor arrays and improved performances.
机译:如今,对各个结构域的挥发性有机化合物(VOC)的分析非常重要。在过去的几十年中,电子鼻子已成为传统分析方法的有前途的替代品。尽管如此,他们的广泛使用仍然受到他们的表现的限制,例如低选择性。在此,我们开发了使用几乎筛选的肽和发夹DNA(HPDNA)的光电鼻,其选择性改善为感测材料和表面等离子体共振成像(SPRI)作为检测系统。由于其对目标VOC的结合性质的互补性,所获得的光电鼻具有非常好的选择性,不仅能够在不同化学家族的VOC之间区分,而且还具有仅具有1碳差异的同一家族的VOC。这些传感材料与SPRI的组合与具有大传感器阵列的光电子鼻的开发和改进的性能相关。

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