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Peptide-Nanowire Hybrid Materials for Selective Sensing of Small Molecules

机译:用于小分子选择性传感的肽-纳米线杂化材料

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The development of a miniaturized sensing platform for the selective detection of chemical odorants could stimulate exciting scientific and technological opportunities. Oligopeptides are robust substrates for the selective recognition of a variety of chemical and biological species. Likewise, semiconducting nanowires are extremely sensitive gas sensors. Here we explore the possibilities and chemistries of linking peptides to silicon nanowire sensors for the selective detection of small molecules. The silica surface of the nanowires is passivated with peptides using amide coupling chemistry. The peptide/ nanowire sensors can be designed, through the peptide sequence, to exhibit orthogonal responses to acetic acid and ammonia vapors, and can detect traces of these gases from "chemically camouflaged" mixtures. Through both theory and experiment, we find that this sensing selectivity arises from both acid/base reactivity and from molecular structure. These results provide a model platform for what can be achieved in terms of selective and sensitive "electronic noses."
机译:选择性检测化学气味剂的小型感测平台的开发可以激发令人兴奋的科学技术机会。寡肽是用于选择性识别各种化学和生物物种的强大底物。同样,半导体纳米线也是极其敏感的气体传感器。在这里,我们探索了将肽连接至硅纳米线传感器以选择性检测小分子的可能性和化学方法。使用酰胺偶联化学方法将纳米线的二氧化硅表面用肽钝化。可以通过肽序列设计肽/纳米线传感器,以表现出对乙酸和氨蒸气的正交响应,并可以从“化学伪装”的混合物中检测出这些气体的痕迹。通过理论和实验,我们发现这种感测选择性来自酸/碱反应性和分子结构。这些结果为选择性和敏感的“电子鼻”所能实现的目标提供了一个模型平台。

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