Zhou Hong, Ren Zhihao, Li Dongxiao, Xu Cheng, Mu Xiaojing, Lee Chengkuo
Department of Electrical and Computer Engineering, National University of Singapore, Singapore, 117583, Singapore.
Center for Intelligent Sensors and MEMS (CISM), National University of Singapore, Singapore, 117583, Singapore.
Nat Commun. 2023 Nov 11;14(1):7316. doi: 10.1038/s41467-023-43127-z.
One of the fundamental hurdles in infrared spectroscopy is the failure of molecular identification when their infrared vibrational fingerprints overlap. Refractive index (RI) is another intrinsic property of molecules associated with electronic polarizability, but with limited contribution to molecular identification in mixed environments currently. Here, we investigate the coupling mode of localized surface plasmon and surface phonon polaritons for vibrational de-overlapping. The coupling mode is sensitive to the molecular refractive index, attributed to the RI-induced vibrational variations of surface phonon polaritons (SPhP) within the Reststrahlen band, referred to as RI-dependent SPhP vibrations. The RI-dependent SPhP vibrations are linked to molecular RI features. According to the deep-learning-augmented demonstration of bond-breaking-bond-making dynamic profiling in biological reaction, we substantiate that the RI-dependent SPhP vibrations effectively disentangle overlapping vibrational modes, achieving a 92% identification accuracy even for the strongly overlapping vibrational modes in the reaction. Our findings offer insights into the realm of light-matter interaction and provide a valuable toolkit for biomedicine applications.
红外光谱学的一个基本障碍是,当分子的红外振动指纹重叠时,无法进行分子识别。折射率(RI)是与电子极化率相关的分子的另一个固有特性,但目前在混合环境中对分子识别的贡献有限。在这里,我们研究了局域表面等离子体和表面声子极化激元的耦合模式,以实现振动去重叠。该耦合模式对分子折射率敏感,这归因于Reststrahlen带内表面声子极化激元(SPhP)的折射率诱导振动变化,称为折射率相关的SPhP振动。折射率相关的SPhP振动与分子折射率特征相关。根据深度学习增强的生物反应中键断裂-键形成动态剖析的演示,我们证实折射率相关的SPhP振动有效地解开了重叠的振动模式,即使对于反应中强烈重叠的振动模式,识别准确率也达到了92%。我们的发现为光与物质相互作用领域提供了见解,并为生物医学应用提供了有价值的工具包。