Institute for Photonics & Advanced Sensing, School of Chemistry & Physics, The University of Adelaide, Adelaide, South Australia 5005.
Langmuir. 2011 May 3;27(9):5680-5. doi: 10.1021/la2002496. Epub 2011 Apr 6.
The first microstructured optical fiber-based sensor platform for aluminum ions using a surface-attached derivative of lumogallion (3), a known fluorescence-based indicator, has been fabricated. These fibers allow for strong evanescent field interactions with the surrounding media because of the small core size while also providing the potential for real-time and distributed measurements. The fluorescence response to aluminum ions was first demonstrated by applying the procedure to glass slides. This was achieved through the covalent attachment of the fluorophore to a polyelectrolyte-coated glass surface and then to the internal holes of a suspended-core microstructured optical fiber to give an effective aluminum sensor. Whereas the sensor platform reported is fabricated for aluminum, the approach is versatile, with applicability to the detection of other ions.
已经制造出了第一个基于微结构光纤的用于铝离子的传感器平台,该平台使用了附着在表面的鲁米诺加仑(3)的衍生物,这是一种已知的基于荧光的指示剂。由于芯子尺寸较小,这些光纤允许与周围介质进行强的倏逝场相互作用,同时还为实时和分布式测量提供了可能性。通过将该程序应用于载玻片,首次证明了对铝离子的荧光响应。这是通过将荧光团共价连接到聚电解质涂覆的玻璃表面,然后连接到悬浮芯微结构光纤的内部孔上来实现的,从而得到有效的铝传感器。虽然报告的传感器平台是为铝制造的,但该方法具有通用性,适用于检测其他离子。