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Laser-induced forward transfer of liquids: Study of the droplet ejection process

机译:激光诱导的液体正向转移:液滴喷射过程的研究

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摘要

Laser-induced forward transfer (LIFT) is a laser direct-write technique that offers the possibility of printing patterns with a high spatial resolution from a wide range of materials in a solid or liquid state, such as conductors, dielectrics, and biomolecules in solution. This versatility has made LIFT a very promising alternative to lithography-based processes for the rapid prototyping of biomolecule microarrays. Here, we study the transfer process through the LIFT of droplets of a solution suitable for microarray preparation. The laser pulse energy and beam size were systematically varied, and the effect on the transferred droplets was evaluated. Controlled transfers in which the deposited droplets displayed optimal features could be obtained by varying these parameters. In addition, the transferred droplet volume displayed a linear dependence on the laser pulse energy. This dependence allowed determining a threshold energy density value, independent of the laser focusing conditions, which acted as necessary conditions for the transfer to occur. The corresponding sufficient condition was given by a different total energy threshold for each laser beam dimension. The threshold energy density was found to be the dimensional parameter that determined the amount of the transferred liquid per laser pulse, and there was no substantial loss of material due to liquid vaporization during the transfer.
机译:激光诱导的正向转移(LIFT)是一种激光直接写入技术,可从多种固态或液态材料(例如溶液中的导体,电介质和生物分子)以高空间分辨率打印图案。这种多功能性使LIFT成为基于光刻技术的生物分子微阵列快速原型制作的非常有希望的替代品。在这里,我们研究了适合微阵列制备的溶液通过液滴的LIFT转移过程。系统地改变了激光脉冲能量和光束大小,并评估了对转移液滴的影响。通过改变这些参数,可以获得沉积的液滴显示最佳特征的受控转移。另外,转移的液滴体积显示出对激光脉冲能量的线性依赖性。这种依赖性使得可以确定阈值能量密度值,而与激光聚焦条件无关,该激光聚焦条件是发生转移的必要条件。对于每个激光束尺寸,通过不同的总能量阈值给出相应的充分条件。发现阈值能量密度是确定每个激光脉冲转移的液体量的尺寸参数,并且在转移期间没有由于液体蒸发而造成的实质性材料损失。

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