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Detecting secondary structure and surface orientation of helical peptide monolayers from resonant hybridization signals

机译:从共振杂交信号检测螺旋肽单层的二级结构和表面取向

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摘要

Hybridization of dominant vibrational modes with meta-surface resonance allows detection of both structural changes and surface orientations of bound helical peptides. Depending on the resonance frequency of meta-molecules, a red- or blue- shift in peptide Amide-I frequency is observed. The underlying coupling mechanism is described by using a temporal coupled mode theory that is in very good agreement with the experimental results. This hybridization phenomenon constitutes the basis of many nanophotonic systems such as tunable coupled mode bio-sensors and dynamic peptide systems driven by infrared signals.
机译:主导振动模式与亚表面共振的杂交允许检测结合的螺旋肽的结构变化和表面取向。取决于间大分子的共振频率,可以观察到肽酰胺1频率发生红移或蓝移。通过使用与实验结果非常吻合的时间耦合模式理论描述了潜在的耦合机制。这种杂交现象构成了许多纳米光子系统的基础,例如可调谐耦合模式生物传感器和由红外信号驱动的动态肽系统。

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