Mitsai E, Naffouti M, David T, Abbarchi M, Hassayoun L, Storozhenko D, Mironenko A, Bratskaya S, Juodkazis S, Makarov S, Kuchmizhak A
Institute of Automation and Control Processes, Far Eastern Branch, Russian Academy of Sciences, Vladivostok 690041, Russia.
Nanoscale. 2019 Jun 20;11(24):11634-11641. doi: 10.1039/c9nr01837a.
Active light-emitting all-dielectric nanoantennas recently have demonstrated great potential as highly efficient nanoscale light sources owing to their strong luminescent and Raman responses. However, their large-scale fabrication faces a number of problems related to productivity limits of existing lithography techniques. Thus, high-throughput fabrication strategies allowing in a facile way to tailor of the nanoantenna emission and thermal properties in the process of their fabrication are highly desirable for various applications. Here, we propose a cost-effective approach to large-scale fabrication of Si1-xGex alloyed Mie nanoresonators possessing an enhanced inherent Raman response which can be simply tailored via tuning the Ge concentration. Moreover, by tailoring the relative Ge composition one can gradually change a complex refractive index of the produced Si1-xGex alloy, which affects the ratio between radiative and nonradiative losses in Si1-xGex nanoantennas, which is crucial for optimization of their optical heating efficiency. Composition-tunable Si1-xGex nanoantennas with an optimized size, light-to-heat conversion and Raman response are implemented for non-invasive sensing of 4-aminothiophenol molecules with a temperature feedback modality and high subwavelength spatial resolution. The results are important for advanced multichannel optical sensing, providing information on analyte's composition, analyte-nanoantenna temperature response and spatial position.
有源发光全介质纳米天线近来已展现出作为高效纳米级光源的巨大潜力,这归因于其强烈的发光和拉曼响应。然而,其大规模制造面临一些与现有光刻技术的生产率限制相关的问题。因此,对于各种应用而言,非常需要能够在纳米天线制造过程中以简便方式调整其发射和热性能的高通量制造策略。在此,我们提出一种经济高效的方法来大规模制造具有增强的固有拉曼响应的Si1-xGex合金米氏纳米谐振器,该响应可通过调整锗浓度来简单地进行调整。此外,通过调整相对锗成分,可以逐渐改变所制备的Si1-xGex合金的复折射率,这会影响Si1-xGex纳米天线中辐射损耗与非辐射损耗之间的比率,这对于优化其光热效率至关重要。具有优化尺寸、光热转换和拉曼响应的成分可调Si1-xGex纳米天线被用于以温度反馈模式和高亚波长空间分辨率对4-氨基硫酚分子进行非侵入式传感。这些结果对于先进的多通道光学传感很重要,可提供有关分析物组成、分析物-纳米天线温度响应和空间位置的信息。