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Preparation and Characterization of Freely-Suspended Graphene Nanomechanical Membrane Devices with Quantum Dots for Point-of-Care Applications

机译:护理点应用中带有量子点的自由悬浮石墨烯纳米机械膜器件的制备与表征

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摘要

We demonstrate freely suspended graphene-based nanomechanical membranes (NMMs) as acoustic sensors in the audible frequency range. Simple and low-cost procedures are used to fabricate NMMs with various thicknesses based on graphene layers grown by graphite exfoliation and solution processed graphene oxide. In addition, NMMs are grafted with quantum dots (QDs) for characterizing mass sensitive vibrational properties. Thickness, roughness, deformation, deflection and emissions of NMMs with attached QDs are experimented and analyzed by utilizing atomic force microscopy, Raman spectroscopy, laser induced deflection analyzer and spectrophotometers. Förster resonance energy transfer (FRET) is experimentally achieved between the QDs attached on NMMs and nearby glass surfaces for illustrating acousto-optic utilization in future experimental implementations combining vibrational properties of NMMs with optical emission properties of QDs. This property denoted as vibrating FRET (VFRET) is previously introduced in theoretical studies while important experimental steps are for the first time achieved in this study for future VFRET implementations. The proposed modeling and experimental methodology are promising for future novel applications such as NMM based biosensing, photonics and VFRET based point-of-care (PoC) devices.
机译:我们展示了可自由悬浮的基于石墨烯的纳米机械膜(NMM)作为可听频率范围内的声学传感器。基于通过石墨剥落和固溶处理的氧化石墨烯生长的石墨烯层,使用简单且低成本的程序来制造具有各种厚度的NMM。此外,NMM嫁接了量子点(QD),以表征质量敏感的振动特性。利用原子力显微镜,拉曼光谱,激光诱导偏转分析仪和分光光度计对附有量子点的NMM的厚度,粗糙度,变形,偏转和发射进行了实验和分析。 Förster共振能量转移(FRET)是通过在NMM上附着的QD与附近玻璃表面之间进行实验实现的,以说明在将NMM的振动特性与QD的光发射特性相结合的未来实验实现中的声光利用。先前在理论研究中引入了这种称为振动FRET(VFRET)的特性,而对于未来的VFRET实现,本研究首次实现了重要的实验步骤。所提出的建模和实验方法对于诸如基于NMM的生物传感,光子学和基于VFRET的即时医疗(PoC)设备等未来的新颖应用很有希望。

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