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Magnetophoretic velocimetry of manganese(II) in a single emulsion droplet at the femtomole level

机译:甲m水平的单个乳剂液滴中锰(II)的磁速测速

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We developed a new experimental technique named magnetophoretic velocimetry to determine a small amount of paramagnetic species in a single microdroplet. The magnetophoretic velocity of an aqueous droplet containing paramagnetic metal ion dispersed in an organic medium could response to a very small amount of the metal ion under an inhomogeneous magnetic field. The paramagnetic droplet (2 similar to8 mum diam) used as a test sample in this study was the aqueous droplet of manganese(II) chloride dispersed in ethylbenzoate whose density was nearly equal to water. A pair of small Nd-Fe-B magnets placed with a gap of 400 mum generated an inhomogeneous magnetic field between the edges, at which the product of the magnetic flux density and the gradient, B(partial derivativeB/partial derivativex), was as high as 410 T-2 m(-1). When a silica capillary containing the emulsion was inserted into the gap between the magnets, the magnetophoretic migration of the droplets was observed with a video microscope. The magnetophoretic velocity divided by the squared radius of the droplet was proportional to the MnCl2 concentration in the droplet, as predicted by a theoretical calculation. The estimated detection limit in this simple method was lower than 10(-16) mol for manganese(II).
机译:我们开发了一种新的实验技术,称为磁致测速法,用于确定单个微滴中的少量顺磁性物质。在不均匀磁场下,含有分散在有机介质中的顺磁性金属离子的水滴的磁致速度可以响应非常少量的金属离子。在本研究中用作测试样品的顺磁液滴(类似于8毫米直径)是分散在苯甲酸乙酯中的氯化锰(II)水溶液的液滴,其密度几乎等于水。一对间隙为400微米的Nd-Fe-B小型磁体在边缘之间产生了不均匀的磁场,在该磁场中,磁通密度和梯度的乘积B(偏导数B /偏导数x)为高达410 T-2 m(-1)。当将包含乳剂的二氧化硅毛细管插入磁体之间的间隙中时,用视频显微镜观察液滴的磁致迁移。如理论计算所预测的,磁致速度除以液滴的平方半径与液滴中的MnCl2浓度成正比。该简单方法的估计检出限低于锰(II)的10(-16)mol。

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