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首页> 外文期刊>Analytical chemistry >A microscale-molecular weight sensor: Probing molecular diffusion between adjacent laminar flows by refractive index gradient detection
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A microscale-molecular weight sensor: Probing molecular diffusion between adjacent laminar flows by refractive index gradient detection

机译:微尺度分子量传感器:通过折射率梯度检测探测相邻层流之间的分子扩散

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A detection scheme that measures the refractive index gradient (RIG) between adjacent laminar flows in a microfluidic device has been used to develop a microscale-molecular weight sensor. The behavior of low Reynolds number flows has been well documented and shows that molecular transport (mixing) between adjacent laminar flows occurs by molecular diffusion between flow boundaries. A diode laser beam, incident upon and illuminating the entire width of a microchannel, measured the transverse concentration gradient at two different positions along a microchannel. The concentration gradient is impacted by the transverse diffusion from a flow with analyte into a flow initially without analyte. The RIG that forms as analyte diffuses from one adjacent flow to the other causes the laser beam, impinging orthogonal to the RIG through the microchannel, to be deflected. The angle of deflection is then monitored on a position-sensitive detector (PSD) at two different positions along the axis of flow to provide a measurement of analyte diffusion. The two positions are just after the flow initially without analyte merges with the flow initially containing all of the analyte (upstream) and then after the two streams have had more time to diffuse together (downstream). The ratio of the PSD signals obtained at the two positions along the flow, downstream signal divided by the upstream signal, is readily correlated to the analyte diffusion coefficient and, thus, the analyte molecular weight for a given class of compounds. The device was evaluated as a molecular weight sensor for poly(ethylene glycol) (PEG) solutions over a molar mass range from 106 to 22 800 g/mol. ne ratio signal was found to be both independent of PEG concentration and sensitive to molecular weight changes for samples ranging from 960 to 22 800 g/mol. Independence of concentration is important for obtaining a reliable molecular weight measurement. The limit of detection for 11840 g/mol PEG measured at the upstream detection position was determined to be 56 ppm, equivalent to 4.5 x 10(-6) RI (3sigma). This technique provides a much needed universal detection method, without requiting analyte derivatization chemistry (e.g., fluorescence), for microfluidic analyses that are becoming increasingly useful in monitoring chemical systems such as continuous-flow reactors or batch polymerization processes. Thus, the molecular weight determination capability is potentially applicable to other compound classes, such as DNA or proteins. [References: 38]
机译:测量微流体装置中相邻层流之间的折射率梯度(RIG)的检测方案已被用于开发微尺度分子量传感器。低雷诺数流的行为已得到充分证明,并表明相邻层流之间的分子运输(混合)是通过流边界之间的分子扩散发生的。入射并照射微通道的整个宽度的二极管激光束在沿微通道的两个不同位置测量了横向浓度梯度。浓度梯度受到具有分析物的流体向最初没有分析物的流体的横向扩散的影响。当分析物从一个相邻流扩散到另一相邻流时形成的RIG导致与微束正交穿过RIG入射的激光束发生偏转。然后在沿着流动轴的两个不同位置的位置敏感检测器(PSD)上监视偏转角,以提供对分析物扩散的测量。这两个位置刚好在最初没有分析物的流与最初包含所有分析物的流合并(上游)之后,然后在两个流有更多时间扩散在一起(下游)之后。沿流动的两个位置获得的PSD信号之比,即下游信号除以上游信号,很容易与分析物扩散系数相关,从而与给定类别化合物的分析物分子量相关。该设备被评估为摩尔质量范围为106至22800 g / mol的聚(乙二醇)(PEG)溶液的分子量传感器。对于比例范围为960至22 800 g / mol的样品,发现ne比率信号既与PEG浓度无关,又对分子量变化敏感。浓度的独立性对于获得可靠的分子量测量很重要。确定在上游检测位置测得的11840 g / mol PEG的检出限为56 ppm,相当于4.5 x 10(-6)RI(3sigma)。对于微流体分析,这项技术提供了急需的通用检测方法,而无需返回分析物衍生化化学试剂(例如荧光),而微流体分析在监测化学系统(例如连续流反应器或间歇聚合过程)中变得越来越有用。因此,分子量测定能力可能适用于其他化合物类别,例如DNA或蛋白质。 [参考:38]

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