ICFO-Institut de Ciències Fotòniques , The Barcelona Institute of Science and Technology , 08860 Castelldefels, Barcelona , Spain.
KTH Royal Institute of Technology , Roslagstullsbacken 21 , 10691 Stockholm , Sweden.
Nano Lett. 2020 Jan 8;20(1):585-591. doi: 10.1021/acs.nanolett.9b04334. Epub 2019 Dec 23.
Chiro-sensitive molecular detection is highly relevant as many biochemical compounds, the building blocks of life, are chiral. Optical chirality is conventionally detected through circular dichroism (CD) in the UV range, where molecules naturally absorb. Recently, plasmonics has been proposed as a way to boost the otherwise very weak CD signal and translate it to the visible/NIR range, where technology is friendlier. Here, we explore how dielectric nanoresonators can contribute to efficiently differentiate molecular enantiomers. We study the influence of the detuning between electric (ED) and magnetic dipole (MD) resonances in silicon nanocylinders on the quality of the CD signal. While our experimental data, supported by numerical simulations, demonstrate that dielectric nanoresonators can perform even better than their plasmonic counterpart, exhibiting larger CD enhancements, we do not observe any significant influence of the optical chirality.
手性敏感分子检测非常重要,因为许多生化化合物是手性的,是生命的组成部分。传统上通过分子在紫外范围内的自然吸收的圆二色性(CD)来检测光学手性。最近,等离子体被提出作为一种增强原本非常微弱的 CD 信号的方法,并将其转换为对技术更友好的可见/近红外范围。在这里,我们探讨了介电纳米谐振器如何有助于有效地区分分子对映异构体。我们研究了在硅纳米圆柱中电(ED)和磁偶极(MD)共振之间的失谐对 CD 信号质量的影响。虽然我们的实验数据得到数值模拟的支持,但表明介电纳米谐振器的性能甚至可以优于等离子体对应物,表现出更大的 CD 增强,但我们没有观察到光学手性的任何显著影响。