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Stain Effects Studied by Time-Resolved Infrared Imaging

机译:通过时间分辨红外成像研究污渍效应

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Pattern formation in evaporating colloidal droplets is an important phenomenon that is commonly observed in several solute-solvent systems; this is also an emerging technique for obtaining fine patterning through controlled conditions of drying. After evaporation of the solvent a ring-like pattern remains on the solid substrate under the condition of contact line pinning. We have used a new analytical technique, time-resolved infrared imaging, to investigate the formation of patterned structures with droplet drying, which is a typical time-dependent phenomenon. We have coupled the technique with optical imaging to follow the evolution of the droplet shape and dimension in correspondence with the chemical images. The main advantage of the technique is represented by the possibility to have simultaneous spatial and time-resolved information; we have applied the method to a water-methylene blue system that has been studied during drying. We have monitored the droplet profile change, in terms of water and methylene blue variation with time and space, at the droplet edge. The analysis has allowed a detailed reconstruction of the evaporating droplet profile with a micrometer scale resolution and of the change in concentration of the dye as a function of evaporating time. A uniform ring-like pattern, after evaporation in controlled relative humidity, is observed. The data are consistent with a constant evaporation model, whose conditions are realized when a constant evaporation is achieved along the entire droplet. The technique has allowed elucidating the evaporation phenomenon close to the contact line in a dye solute-solvent system, which is very difficult to study with other techniques.
机译:蒸发胶体液滴中的图案形成是一种重要现象,通常在几种溶质-溶剂系统中均会观察到。这也是通过控制干燥条件获得精细图案的新兴技术。在溶剂蒸发之后,在接触线钉扎的条件下,环状图案保留在固体基材上。我们已经使用了一种新的分析技术,即时间分辨红外成像,来研究液滴干燥形成的图案结构,这是典型的时间依赖性现象。我们已经将该技术与光学成像相结合,以跟踪液滴形状和尺寸与化学图像相对应的演变。该技术的主要优点是可以同时获得空间和时间分辨信息。我们已将该方法应用于干燥过程中已研究的水-亚甲基蓝体系。我们已经监测了液滴轮廓在液滴边缘随水和亚甲蓝随时间和空间变化的变化。该分析允许以微米级的分辨率对蒸发液滴的轮廓进行详细的重建,并且根据蒸发时间来确定染料浓度的变化。在受控的相对湿度下蒸发后,观察到均匀的环状图案。该数据与恒定蒸发模型一致,该恒定蒸发模型的条件是在整个液滴上实现恒定蒸发时实现的。该技术可以阐明染料溶质-溶剂系统中靠近接触线的蒸发现象,这很难用其他技术进行研究。

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