Sachs Johannes, Günther Jan-Philipp, Mark Andrew G, Fischer Peer
Max Planck Institute for Intelligent Systems, Heisenbergstr. 3, Stuttgart, 70569, Germany.
Institute of Physical Chemistry, University of Stuttgart, Pfaffenwaldring 55, Stuttgart, 70569, Germany.
Nat Commun. 2020 Sep 9;11(1):4513. doi: 10.1038/s41467-020-18166-5.
Chiral plasmonic nanoparticles can exhibit strong chiroptical signals compared to the corresponding molecular response. Observations are, however, generally restricted to measurements on stationary single particles with a fixed orientation, which complicates the spectral analysis. Here, we report the spectroscopic observation of a freely diffusing single chiral nanoparticle in solution. By acquiring time-resolved circular differential scattering signals we show that the spectral interpretation is significantly simplified. We experimentally demonstrate the equivalence between time-averaged chiral spectra observed for an individual nanostructure and the corresponding ensemble spectra, and thereby demonstrate the ergodic principle for chiroptical spectroscopy. We also show how it is possible for an achiral particle to yield an instantaneous chiroptical response, whereas the time-averaged signals are an unequivocal measure of chirality. Time-resolved chiroptical spectroscopy on a freely moving chiral nanoparticle advances the field of single-particle spectroscopy, and is a means to obtain the true signature of the nanoparticle's chirality.
与相应的分子响应相比,手性等离子体纳米颗粒可表现出强烈的手性光学信号。然而,观察通常仅限于对固定取向的静止单个颗粒进行测量,这使得光谱分析变得复杂。在此,我们报告了溶液中自由扩散的单个手性纳米颗粒的光谱观察结果。通过获取时间分辨的圆二色散射信号,我们表明光谱解释得到了显著简化。我们通过实验证明了对单个纳米结构观察到的时间平均手性光谱与相应的系综光谱之间的等效性,从而证明了手性光谱学的遍历原理。我们还展示了一个非手性颗粒如何产生瞬时手性光学响应,而时间平均信号是手性的明确度量。对自由移动的手性纳米颗粒进行时间分辨手性光谱学推进了单颗粒光谱学领域的发展,并且是获得纳米颗粒手性真实特征的一种手段。