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Laser Forward Transfer: Direct-writing arrays of single microbeads

机译:激光正向传输:直接写入单个微珠的阵列

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Microbead-based biosensors, lab-on-a-chip devices, optoelectronics, and engineered tissue constructs pose a difficult challenge for direct-write technologies. The fabrication of microbead arrays with single-elements requires a highly-integrated technique. We demonstrate Laser Forward Transfer (LFT) as an ideal technique to target single microbeads with widely disparate properties, for real-time transfer into user-directed array positions. LFT enables us to generate MxM and MxN polystyrene and alginate microbead arrays. Soft transfer of microbeads were achieved with little to no thermal or UV damage to the structural and functional surfaces as a result of nanosecond-pulsed excimer laser exposure, as assessed by FTIR spectra and SEM characterization. Long-term array integrity was preserved, even under intense ultrasonication. The unique features of LFT introduce a new avenue for the fabrication of specific-microbead arrays, with customizable patterns and potential for long-term studies.
机译:基于微珠的生物传感器,芯片实验室设备,光电器件和工程组织构造对直写技术提出了艰巨的挑战。具有单元素的微珠阵列的制造需要高度集成的技术。我们展示了激光正向转移(LFT)作为靶向具有广泛不同特性的单个微珠的理想技术,以便将其实时转移到用户控制的阵列位置。 LFT使我们能够生成MxM和MxN的聚苯乙烯和藻酸盐微珠阵列。通过FTIR光谱和SEM表征,纳秒脉冲受激准分子激光暴露导致微珠的软转移,对结构和功能表面几乎没有热损伤或UV损伤。即使在强烈的超声波作用下,也能保持长期的阵列完整性。 LFT的独特功能为特定微珠阵列的制造提供了一条新途径,具有可定制的模式和长期研究的潜力。

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