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Chiral biosensing at both interband transition and plasmonic extinction regions using twisted-stacked nanowire arrays

机译:在带间的过渡和手性若电浆灭绝的地区使用twisted-stacked纳米线阵列

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Chiral metal nanostructures that exhibit strong chiroptical properties and enhanced light-matter interactions have recently attracted great interest due to their potential applications including chiral sensing and asymmetric synthesis. Most studies in this field focused on chiral sensing using circular dichroism (CD) responses at the plasmonic extinction region. In comparison, little is known about their CD responses at interband transition regions and their utility in chiral biosensing. Herein, we constructed a series of twisted-stacked silver nanowire arrays (TNAs) featuring CD signals at both the interband transition and plasmonic extinction regions and that are independently controllable. These TNAs are highly sensitive towards protein secondary structures. Proteins containing more beta-sheets are more sensitive toward strong chiral plasmonic fields, whereas proteins rich in alpha-helices tend to generate larger CD shifts at the interband transition region of TNAs. The mutually independent optical activities at the interband transition and plasmonic extinction regions complement each other, providing more sensitivity and reliability in chiral biosensing.
机译:手性金属纳米结构表现出强劲chiroptical属性和增强件轻松事最近引起了极大的交互由于其潜在的应用包括手性传感和不对称合成。手性传感用圆二色性(CD)反应在电浆灭绝。相比之下,对他们的CD反应在带间的过渡区域手性若的效用。构建一系列twisted-stacked银纳米线阵列(TNAs) CD信号带间的过渡和电浆灭绝的地区和独立可控。对蛋白质二级结构。包含更多β褶板更敏感向强有力的手性电浆字段,而蛋白质丰富的阿尔法螺旋倾向于生成更大的CD在带间的过渡转变TNAs区域。活动和带间的过渡电浆灭绝地区补充提供更多的灵敏度和可靠性手性若。

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