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Monodisperse plasticized poly(vinyl chloride) fluorescent microspheres for selective lonophore-based sensing and extraction

机译:单分散增塑聚氯乙烯荧光微球,用于基于选择性长聚物的传感和提取

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摘要

A convenient method for the preparation of monodisperse, plasticized poly(vinyl chloride) particles based on an automated particle casting technique is described. The particles are made highly selective for a number of ions by doping them with ionophores and other active components, in complete analogy to thin-film or fiber-optic chemical sensors. The approach used here produces spheres of high monodispersity at a rate of similar to 20 000 particles/s. The casting process is based on a reproducible polymer drop formation and precipitation I process, and the particles are formed under very mild, nonreactive conditions. This allows one to conveniently incorporate known amounts of different active components into the polymers. As an initial example, the particles are doped with three optical sensing components, the sodium ionophore tert-butylcalix[4]arene tetraethyl ester, the H+-chromoionophore ETH 5294, and the anionic additive sodium tetrakis[3,5-bis(trifluoromethyl)phenyl] borate. The particles are found to be of spherical shape with a diameter of similar to 10 mum. They respond individually and selectively to sodium according to classical optode theory, as determined by fluorescence microscopy. With a RSD of 1.6%, sensing reproducibility from particle to particle is excellent. Ibis technique may allow the development of mass-produced chemically selective microspheres on the basis of bulk extraction processes.
机译:描述了一种基于自动颗粒流延技术制备单分散的增塑聚氯乙烯颗粒的简便方法。完全类似于薄膜或光纤化学传感器,通过向离子中掺杂离子载体和其他活性成分,可以使这些颗粒对多种离子具有高度选择性。此处使用的方法产生的高单分散性球体的速率接近2万个粒子/秒。浇铸过程基于可重现的聚合物滴形成和沉淀过程,并且颗粒是在非常温和的非反应条件下形成的。这使人们可以方便地将已知量的不同活性组分掺入聚合物中。作为初始示例,粒子中掺杂了三种光学传感组件:钠离子载体叔丁基杯杯[4]芳烃四乙酯,H +离子载体ETH 5294和阴离子添加剂四[3,5-双(三氟甲基)钠]苯基]硼酸盐。发现这些颗粒是球形的,直径类似于10μm。根据荧光显微镜测定,它们根据经典的光电理论对钠进行单独和选择性的反应。 RSD为1.6%,从颗粒到颗粒的传感重现性极佳。宜必思(Ibis)技术可能允许在大量提取过程的基础上开发出大量生产的化学选择性微球。

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