Leiterer Jork, Grabolle Markus, Rurack Knut, Resch-Genger Ute, Ziegler Jan, Nann Thomas, Panne Ulrich
Federal Institute for Materials Research and Testing (BAM), Richard-Willstätter-Str. 11, 12489 Berlin, Germany.
Ann N Y Acad Sci. 2008;1130:78-84. doi: 10.1196/annals.1430.039.
Acoustic levitation is used as a new tool to study concentration-dependent processes in fluorescence spectroscopy. With this technique, small amounts of liquid and solid samples can be measured without the need for sample supports or containers, which often limits signal acquisition and can even alter sample properties due to interactions with the support material. We demonstrate that, because of the small sample volume, fluorescence measurements at high concentrations of an organic dye are possible without the limitation of inner-filter effects, which hamper such experiments in conventional, cuvette-based measurements. Furthermore, we show that acoustic levitation of liquid samples provides an experimentally simple way to study distance-dependent fluorescence modulations in semiconductor nanocrystals. The evaporation of the solvent during levitation leads to a continuous increase of solute concentration and can easily be monitored by laser-induced fluorescence.
声悬浮被用作一种新工具,用于研究荧光光谱中浓度依赖性过程。利用这项技术,无需样品支撑物或容器就能测量少量液体和固体样品,而样品支撑物或容器常常会限制信号采集,甚至由于与支撑材料的相互作用而改变样品性质。我们证明,由于样品体积小,在高浓度有机染料情况下进行荧光测量时不受内滤效应限制,而在传统的基于比色皿的测量中,内滤效应会妨碍此类实验。此外,我们表明,液体样品的声悬浮为研究半导体纳米晶体中距离依赖性荧光调制提供了一种实验上简单的方法。悬浮过程中溶剂的蒸发导致溶质浓度持续增加,并且可以通过激光诱导荧光轻松监测。