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Laser-induced transfer of gel microdroplets for cell printing

机译:用于细胞印刷的激光诱导的凝胶微量滴电流

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摘要

We study thermal and transport processes involved in the transfer of gel microdroplets under the conditions of laser cell microprinting. The specific features of the interaction of pulsed laser radiation (lambda= 1.064 mm, pulse duration 4 -200 ns, energy 2 mu J-mJ) with the absorbing gold film deposited on the glass donor substrate are determined. The investigation of the dynamics of transport processes by means of fast optical video recording and optoacoustic methods makes it possible to determine the characteristics of the produced gel jets as functions of the laser operation regimes. The hydrodynamic process of interaction between the laser radiation and the gold coating with the hydrogel layer on it is considered and the temperature in the region of the laser pulse action is estimated. It is shown that in the mechanism of laserinduced transfer a significant role is played by the processes of explosive boiling of water (in gel) and gold. The amount of gold nanoparticles arriving at the acceptor plate in the process of the laser transfer is determined. For the laser pulse duration 8 ns and small energies (less than 10 mu J), the fraction of gold nanoparticles in the gel microdroplets is negligibly small, and their quantity linearly grows with increasing pulse energy. The performed studies offer a base for optimising the processes of laser transfer of gel microdroplets in the rapidly developing technologies of cell microprinting.
机译:我们在激光细胞微胶体条件下研究凝胶微型电池转移的热量和运输过程。确定脉冲激光辐射的相互作用的特定特征(Lambda = 1.064mm,脉冲持续时间4 -200ns,能量2μmj-mj)与沉积在玻璃供体基板上的吸收金膜。通过快速光学视频记录和光声方法对运输过程的动态进行调查,使得可以确定产生的凝胶喷射器作为激光操作制度的功能的特性。考虑了激光辐射与金涂层之间的相互作用的流体动力学过程,估计激光脉冲作用区域中的温度。结果表明,在激光诱导的转移机制中,通过水(在凝胶)和金中的爆炸性沸腾的过程中发挥了重要作用。确定在激光转移过程中到达受体板的金纳米粒子的量。对于激光脉冲持续时间8ns和小的能量(小于10μj),凝胶微型液体中的金纳米粒子的级分不能忽略小,并且它们随着脉冲能量的增加线性地增长。所执行的研究提供了优化凝胶微塑料的激光转移过程的基础,在细胞微胶凝中的快速发展技术中。

著录项

  • 来源
    《Quantum electronics》 |2017年第12期|共8页
  • 作者单位

    Russian Acad Sci Fed Res Ctr Crystallog &

    Photon Inst Photon Technol Ul Pionerskaya 2 Moscow 108840 Russia;

    Russian Acad Sci Fed Res Ctr Crystallog &

    Photon Inst Photon Technol Ul Pionerskaya 2 Moscow 108840 Russia;

    Russian Acad Sci Fed Res Ctr Crystallog &

    Photon Inst Photon Technol Ul Pionerskaya 2 Moscow 108840 Russia;

    Russian Acad Sci Fed Res Ctr Crystallog &

    Photon Inst Photon Technol Ul Pionerskaya 2 Moscow 108840 Russia;

    Skolkovo Inst Sci &

    Technol Ctr Design Mfg &

    Mat Ul Novaya 100 Moscow 143025 Russia;

    Moscow MV Lomonosov State Univ Moscow 119991 Russia;

    Moscow MV Lomonosov State Univ Moscow 119991 Russia;

    Russian Acad Sci Fed Res Ctr Crystallog &

    Photon Inst Photon Technol Ul Pionerskaya 2 Moscow 108840 Russia;

    Russian Acad Sci Fed Res Ctr Crystallog &

    Photon Inst Photon Technol Ul Pionerskaya 2 Moscow 108840 Russia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光电子技术、激光技术;
  • 关键词

    laser-induced transfer; gel microdroplets; cell printing;

    机译:激光诱导的转移;凝胶微量滴板;细胞印刷;

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