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Asymmetric nanofluidic grating detector for differential refractive index measurement and biosensing

机译:用于差分折射率测量和生物传感的不对称纳米流体光栅检测器

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摘要

Measuring small changes in refractive index can provide both sensitive and contactless information on molecule concentration or process conditions for a wide range of applications. However, refractive index measurements are easily perturbed by non-specific background signals, such as temperature changes or non-specific binding. Here, we present an optofluidic device for measuring refractive index with direct background subtraction within a single measurement. The device is comprised of two interdigitated arrays of nanofluidic channels designed to form an optical grating. Optical path differences between the two sets of channels can be measured directly via an intensity ratio within the diffraction pattern that forms when the grating is illuminated by a collimated laser beam. Our results show that no calibration or biasing is required if the unit cell of the grating is designed with an appropriate built-in asymmetry. In proof-of-concept experiments we attained a noise level equivalent to similar to 10(-5) refractive index units (30 Hz sampling rate, 4 min measurement interval). Furthermore, we show that the accumulation of biomolecules on the surface of the nanochannels can be measured in real-time. Because of its simplicity and robustness, we expect that this inherently differential measurement concept will find many applications in ultra-low volume analytical systems, biosensors, and portable devices.
机译:测量折射率的小变化可以提供有关分子浓度或工艺条件的敏感和非接触信息,适用于各种应用。然而,通过非特定背景信号容易地扰乱折射率测量,例如温度变化或非特异性结合。在这里,我们提出了一种用于测量折射率的单次流体装置,在单个测量内具有直接背景减法。该装置包括两个纳米流体通道阵列,设计用于形成光学光栅。两组通道之间的光路差可以通过衍射图案内的强度比直接测量,当通过准直激光束照射光栅时形成的衍射图案中的强度比。我们的结果表明,如果使用适当的内置不对称,则无需校准或偏置。在概念证明实验中,我们达到了相当于与10(-5)折射率单位(30Hz采样率,4分钟测量间隔)相同的噪声水平。此外,我们表明,可以实时测量纳米槽表面上的生物分子的积累。由于其简单和稳健性,我们预计这一本固定的差分测量概念将在超低卷分析系统,生物传感器和便携式设备中找到许多应用。

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