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Single-walled carbon nanotube membranes as non-reflective substrates for nanophotonic applications

机译:单壁碳纳米管膜作为纳米光电应用的非反射基材

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摘要

We demonstrate that single-walled carbon nanotube (SWCNT) membranes can be successfully utilized as nanometer-thick substrates for enhanced visualization and facilitated study of individual nanoparticles. As model objects, we transfer optically resonant 200 nm silicon nanoparticles onto pristine and ethanol-densified SWCNT membranes by the femtosecond laser printing method. We image nanoparticles by scanning electron and bright-field optical microscopy, and characterize by linear and Raman scattering spectroscopy. The use of a pristine SWCNT membrane allows to achieve an order-of-magnitude enhancement of the optical contrast of the nanoparticle bright field image over the results shown in the case of the glass substrate use. The observed optical contrast enhancement is in agreement with the spectrophotometric measurements showing an extremely low specular reflectance of the pristine membrane (<= 0.1%). Owing to the high transparency, negligibly small reflectance and thickness, SWCNT membranes offer a variety of perspective applications in nanophotonics, bioimaging and synchrotron radiation studies.
机译:我们证明,单壁碳纳米管(SWCNT)膜可以成功地用作纳米厚度的基底,以增强可视化,并促进单个纳米颗粒的研究。作为模型对象,我们通过飞秒激光打印方法将光学共振的200纳米硅纳米颗粒转移到原始和乙醇致密的SWCNT膜上。我们通过扫描电子显微镜和亮场光学显微镜对纳米颗粒进行成像,并通过线性和拉曼散射光谱对其进行表征。使用原始SWCNT膜可以实现纳米颗粒亮场图像的光学对比度比使用玻璃基板的结果高出一个数量级。观察到的光学对比度增强与分光光度测量结果一致,显示原始膜的镜面反射率极低(<=0.1%)。由于SWCNT膜的高透明度、可忽略的小反射率和厚度,在纳米光子学、生物成像和同步辐射研究中有着广泛的应用前景。

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