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Femtosecond Laser Fabrication of Monolithically Integrated Microfluidic Sensors in Glass

期刊

SENSORS
卷 14, 期 10, 页码 19402-19440

出版社

MDPI
DOI: 10.3390/s141019402

关键词

femtosecond laser; microfabrication; glass material; micro-/nanofluidics; lab-on-a-chip; optofluidics; electrofluidics; surface-enhanced Raman-scattering; lab-on-fiber

资金

  1. National Natural Science Foundation of China [61327902, 11104294, 61275205, 61108015]
  2. National Basic Research Program of China [2014CB921300]

向作者/读者索取更多资源

Femtosecond lasers have revolutionized the processing of materials, since their ultrashort pulse width and extremely high peak intensity allows high-quality micro-and nanofabrication of three-dimensional (3D) structures. This unique capability opens up a new route for fabrication of microfluidic sensors for biochemical applications. The present paper presents a comprehensive review of recent advancements in femtosecond laser processing of glass for a variety of microfluidic sensor applications. These include 3D integration of micro-/nanofluidic, optofluidic, electrofluidic, surface-enhanced Raman-scattering devices, in addition to fabrication of devices for microfluidic bioassays and lab-on-fiber sensors. This paper describes the unique characteristics of femtosecond laser processing and the basic concepts involved in femtosecond laser direct writing. Advanced spatiotemporal beam shaping methods are also discussed. Typical examples of microfluidic sensors fabricated using femtosecond lasers are then highlighted, and their applications in chemical and biological sensing are described. Finally, a summary of the technology is given and the outlook for further developments in this field is considered.

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