Department of Chemistry, James Franck Institute, and Institute for Biophysical Dynamics, The University of Chicago, Chicago, Illinois 60637, USA.
Rev Sci Instrum. 2023 Mar 1;94(3):034102. doi: 10.1063/5.0121817.
Fast microfluidic mixers are a valuable tool for studying solution-phase chemical reaction kinetics and molecular processes with spectroscopy. However, microfluidic mixers that are compatible with infrared vibrational spectroscopy have seen only limited development due to the poor infrared transparency of the current microfabrication material. We describe the design, fabrication, and characterization of CaF-based continuous flow turbulent mixers, which are capable of measuring kinetics in the millisecond time window with infrared spectroscopy, when integrated into an infrared microscope. Kinetics measurements demonstrate the ability to resolve relaxation processes with 1 millisecond time resolution, and straightforward improvements are described that should result in sub-100 µs time-resolution.
快速微流混合器是研究溶液相化学反应动力学和分子过程的一种有价值的工具,结合光谱学使用效果更好。然而,由于当前微加工材料的红外透光性差,与红外振动光谱兼容的微流混合器的发展受到了限制。我们描述了基于 CaF 的连续流湍流混合器的设计、制造和特性,当将其集成到红外显微镜中时,它能够用红外光谱测量毫秒时间窗口内的动力学。动力学测量表明,有能力以 1 毫秒的时间分辨率分辨弛豫过程,并且描述了一些简单的改进方法,这应该可以实现低于 100µs 的时间分辨率。