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Liquids Microprinting Through Laser-induced Forward Transfer

机译:通过激光诱导的正向转移进行液体微印刷

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摘要

Laser-induced forward transfer (LIFT) is a direct-writing technique which allows the deposition of tiny amounts of material from a donor thin film onto a receptor substrate. When LIFT is applied to liquid donor films, the laser radiation affects only a localized fraction of the liquid, thereby impelling the unaffected portion towards the receptor substrate. Thus, transfer takes place with no melting or vaporization of the deposited fraction and, in this way, LIFT can be used to successfully print complex materials like inorganic inks and pastes, biomolecules in solution, and even living cells and microorganisms. In addition, and for a wide range of liquid rheologies, the material can be deposited in the form of circular microdroplets; this provides LIFT with a high degree of spatial resolution leading to feature sizes below 10 μm, and making it competitive in front of conventional printing techniques. In this work, a revision of the main achievements of the LIFT of liquids is carried out, correlating the morphological characteristics of the generated features with the results of the study of the transfer process. Special emphasis is put on the characterization of the dynamics of liquid ejection, which has provided valuable information for the understanding of microdroplets deposition. Thus, new time-resolved imaging analyses have shown a material release behavior which contrasts with most of the previously made assumptions, and that allows clarifying some of the questions open during the study of the LIFT technique.
机译:激光诱导的正向转移(LIFT)是一种直接写入技术,可将少量物质从供体薄膜上沉积到受体基质上。当将LIFT应用于液体供体薄膜时,激光辐射仅影响液体的局部部分,从而将未受影响的部分推向受体基底。因此,转移的过程不会使沉积的馏分熔化或汽化,因此,LIFT可用于成功印刷复杂的材料,例如无机墨水和浆糊,溶液中的生物分子,甚至是活细胞和微生物。另外,对于各种各样的液体流变性,该材料可以以圆形微滴的形式沉积。这为LIFT提供了高度的空间分辨率,导致特征尺寸低于10μm,使其在传统印刷技术面前具有竞争力。在这项工作中,对液体LIFT的主要成就进行了修订,将生成特征的形态特征与转移过程的研究结果相关联。特别强调液体喷射的动力学特性,这为理解微滴沉积提供了有价值的信息。因此,新的时间分辨成像分析已经显示出材料释放行为,该行为与大多数先前做出的假设形成对比,并且可以澄清在研究LIFT技术期间存在的一些问题。

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