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Portable Sub-Terahertz Resonance Spectrometer Combined with Microfluidic Sample Cell

机译:便携式亚太赫兹共振光谱仪与微流控样品池的结合

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Radiation in the Terahertz frequency range interacts with vibrations in the weakest molecular couplings such as hydrogen bonding, van der Waals forces, and hydrophobic interactions. The work presented demonstrates our efforts towards the development of a microfluidic device as the sample cell for presenting liquid samples within the detection region of a novel sub-THz spectrometer. The continuous-wave, frequency-domain spectrometer, operating at room temperature between 315 and 480 GHz with spectral resolution of 0.3 GHz, already demonstrated highly intense and specific signatures from nanogram samples of dry biological molecules and whole bacterial cells. The very low absorption by water in this sample cell will allow for the use of liquid samples to present cells and molecules in their natural environment. The microfluidic device design utilizes a set of channels formed with metal sidewalls to enhance the interaction between the THz radiation and the sample, increasing the sensitivity of the system. Combined with near field effects, through use of a detection probe close to the surface of the sample cell, spatial resolution less than the diffraction limit can be achieved, further reducing the amount of sample required for analysis. This work focuses on the design, and fabrication methods, which will allow implementation of the microfluidic sample cell device within the THz spectrometer. The device will be utilized for characterization of different cell types, showing that THz interrogation of liquid samples is possible.
机译:太赫兹频率范围内的辐射与最弱的分子耦合中的振动相互作用,例如氢键,范德华力和疏水相互作用。提出的工作证明了我们在开发微流体装置方面的努力,该装置是一种用于在新型亚太赫兹光谱仪的检测区域内呈递液体样品的样品池。连续波频域光谱仪在315至480 GHz的室温下运行,光谱分辨率为0.3 GHz,已经从干燥生物分子和整个细菌细胞的纳克样品中显示出高度强烈的特异性特征。在此样品池中水的吸收极低,将允许使用液体样品在其自然环境中展示细胞和分子。微流体装置设计利用一组形成有金属侧壁的通道来增强THz辐射与样品之间的相互作用,从而增加系统的灵敏度。结合近场效应,通过使用靠近样品池表面的检测探针,可以获得小于衍射极限的空间分辨率,从而进一步减少了分析所需的样品量。这项工作集中在设计和制造方法上,这将允许在THz光谱仪内实现微流体样品池装置。该设备将用于表征不同类型的细胞,表明液体样品的THz询问是可能的。

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