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单个纳米棒的纳米机械光热近红外光谱显微镜技术

Nanomechanical Photothermal Near Infrared Spectromicroscopy of Individual Nanorods.

作者信息

Kanellopulos Kostas, West Robert G, Schmid Silvan

机构信息

Institute of Sensor and Actuator Systems, TU Wien, Gusshausstrasse 27-29, 1040 Vienna, Austria.

出版信息

ACS Photonics. 2023 Sep 20;10(10):3730-3739. doi: 10.1021/acsphotonics.3c00937. eCollection 2023 Oct 18.

Abstract

Understanding light-matter interaction at the nanoscale requires probing the optical properties of matter at the individual nanoabsorber level. To this end, we developed a nanomechanical photothermal sensing platform that can be used as a full spectromicroscopy tool for single molecule and single particle analysis. As a demonstration, the absorption cross-section of individual gold nanorods is resolved from a spectroscopic and polarization standpoint. By exploiting the capabilities of nanomechanical photothermal spectromicroscopy, the longitudinal localized surface plasmon resonance in the NIR range is unraveled and quantitatively characterized. The polarization features of the transversal surface plasmon resonance in the VIS range are also analyzed. The measurements are compared with the finite element method, elucidating the role played by electron surface and bulk scattering in these plasmonic nanostructures, as well as the interaction between the nanoabsorber and the nanoresonator, ultimately resulting in absorption strength modulation. Finally, a comprehensive comparison is conducted, evaluating the signal-to-noise ratio of nanomechanical photothermal spectroscopy against other cutting-edge single molecule and particle spectroscopy techniques. This analysis highlights the remarkable potential of nanomechanical photothermal spectroscopy due to its exceptional sensitivity.

摘要

要理解纳米尺度下的光与物质相互作用,需要在单个纳米吸收体层面探究物质的光学性质。为此,我们开发了一种纳米机械光热传感平台,它可用作单分子和单粒子分析的全光谱显微镜工具。作为演示,从光谱和偏振角度解析了单个金纳米棒的吸收截面。通过利用纳米机械光热光谱显微镜的功能,揭示并定量表征了近红外范围内的纵向局域表面等离子体共振。还分析了可见光范围内横向表面等离子体共振的偏振特性。将测量结果与有限元方法进行比较,阐明了电子表面和体散射在这些等离子体纳米结构中所起的作用,以及纳米吸收体与纳米谐振器之间的相互作用,最终导致吸收强度调制。最后,进行了全面比较,评估了纳米机械光热光谱相对于其他前沿单分子和粒子光谱技术的信噪比。该分析突出了纳米机械光热光谱因其卓越灵敏度而具有的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88e4/10588552/ba45402384db/ph3c00937_0001.jpg

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