PPSM, ENS Cachan, CNRS, Wilson, 94230, Cachan, France.
Lab Chip. 2009 Oct 7;9(19):2818-23. doi: 10.1039/b904641k. Epub 2009 Jul 3.
A microfabricated device has been developed for the selective detection of lead in water. It is based on the use of a selective and sensitive fluorescent molecular sensor for lead (Calix-DANS4) which contains a calix[4]arene bearing four dansyl groups. The microchip-based lead sensor contains a Y-shape microchannel equipped with a passive mixer and moulded on a glass substrate. An optimization of the microcircuit length has been performed in order to have a full complexation of the Calix-DANS4. The detection is performed by using a configuration in which the sensing molecules are excited by two optical fibres, each one connected to a 365 nm UV LED, and the light collection is made by another optical fibre with a photomultiplier. By using this configuration we have shown the possibility to detect lead with a detection limit of 5 ppb. The effect of interfering cations such as calcium has been evaluated. The obtained measurements have been validated by an alternative method (ASV).
已经开发出一种用于选择性检测水中铅的微制造设备。它基于使用对铅具有选择性和敏感性的荧光分子传感器(Calix-DANS4),该传感器包含带有四个丹磺酰基的杯[4]芳烃。基于微芯片的铅传感器包含一个 Y 形微通道,配备有被动混合器,并模制在玻璃基板上。为了实现 Calix-DANS4 的完全络合,已经对微电路长度进行了优化。检测是通过使用这样的配置来进行的,其中传感分子由两根光纤激发,每根光纤连接到一个 365nm 的 UV LED,并且光收集是由另一个带有光电倍增管的光纤进行的。通过使用这种配置,我们已经证明了有可能以 5ppb 的检测限检测铅。已经评估了诸如钙的干扰阳离子的影响。通过替代方法(ASV)验证了获得的测量值。