论文标题

手性元元素和表面增强的拉曼散射,用于对映体歧视螺旋纳米颗粒

Chiral Metafilms and Surface Enhanced Raman Scattering For Enantiomeric Discrimination of Helicoid Nanoparticles

论文作者

Kartau, Martin, Skvortsova, Anastasia, Tabouillot, Victor, Kumar, Rahul, Bainovab, Polina, Burtsev, Vasilii, Svorcik, Vaclav, Gadegaard, Nikolaj, Im, Sang Won, Urbanova, Marie, Lyutakov, Oleksiy, Kadodwala, Malcolm, Karimullah, Affar S.

论文摘要

手性纳米光子平台提供了一种创造具有增强不对称特性和强度增强的近场的方法。可以利用它们进行光学测量值,该光学测量值允许在检测水平以大于6级数量级的映体歧视,而基于圆形极化光的常规手性敏感光谱法的实现。利用纳米光子平台进行手性检测的最佳方法是使用光谱方法,该方法提供了局部探针,该方法是通过手性物种引起的近场环境变化的探针。在这里,我们表明表面增强的拉曼光谱法(SER)是近场环境的局部探针。我们已经用它来实现对手性元元素的左右手动对映体的手性螺旋纳米颗粒的映体歧视。创建了更热的电磁热点,用于用于匹配的螺旋型和元中心的组合(左右右翼和右右),而错配合的组合则导致电磁热点更凉爽。借助ACHIRAL RAMAN REPORTER分子,使用SER很容易检测到这种对热点强度的大型对映体依赖性。实际上,我们使用SERS来区分通过混合手性纳米颗粒和Metafilm产生的等离子非对映异构体的不同EM环境。这项工作表明,通过将手性纳米光子平台与已建立的SERS策略相结合,可以打开超敏感的手性检测中的新途径。

Chiral nanophotonic platforms provide a means of creating near fields with both enhanced asymmetric properties and intensities. They can be exploited for optical measurements that allow enantiomeric discrimination at detection levels greater than 6 orders of magnitude than is achieved with conventional chirally sensitive spectroscopic methods based on circularly polarized light. The optimal approach for exploiting nanophotonic platforms for chiral detection would be to use spectroscopic methods that provide a local probe of changes in the near field environment induced by the presence of chiral species. Here we show that surface enhanced Raman spectroscopy (SERS) is such a local probe of the near field environment. We have used it to achieve enantiomeric discrimination of chiral helicoid nanoparticles deposited on left and right-handed enantiomorphs of a chiral metafilm. Hotter electromagnetic hotspots are created for matched combinations of helicoid and metafilms (left-left and right-right), while mismatched combinations leads to significantly cooler electromagnetic hotspots. This large enantiomeric dependency on hotspot intensity is readily detected using SERS with the aid of an achiral Raman reporter molecule. In effect we have used SERS to distinguish between the different EM environments of the plasmonic diastereomers produced by mixing chiral nanoparticles and metafilms. The work demonstrates that by combining chiral nanophotonic platforms with established SERS strategies new avenues in ultrasensitive chiral detection can be opened.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源