Rapid prototyping of glass-based microfluidic chips utilizing two-pass defocused CO2 laser beam method

被引:3
作者
Lung-Ming Fu
Wei-Jhong Ju
Ruey-Jen Yang
Yao-Nan Wang
机构
[1] Graduate Institute of Materials Engineering,Department of Engineering Science
[2] National Pingtung University of Science and Technology,Department of Vehicle Engineering
[3] National Cheng Kung University,undefined
[4] National Pingtung University of Science and Technology,undefined
来源
Microfluidics and Nanofluidics | 2013年 / 14卷
关键词
Defocused laser beam; CO; laser; Microfluidic chip; Formaldehyde;
D O I
暂无
中图分类号
学科分类号
摘要
A method is proposed for the scribing of glass substrates utilizing a commercial CO2 laser system. In the proposed approach, the substrate is placed on a hotplate and the microchannel is then ablated using two passes of a defocused laser beam. The aspect ratio and surface quality of the microchannels formed after the first and second laser passes are examined using scanning electron microscopy and atomic force microscopy. The observation results show that the second laser pass yields an effective reduction in the surface roughness. The practicality of the proposed approach is demonstrated by fabricating a microfluidic chip for formaldehyde concentration detection. It is shown that the detection results obtained for five Chinese herbs with formaldehyde concentrations ranging from 5 to 55 ppm deviate by no more than 5.5 % from those obtained using a commercial macroscale device. In other words, the results confirm that the proposed defocused ablation technique represents a viable solution for the rapid and low-cost fabrication of a wide variety of glass-based microfluidic chips.
引用
收藏
页码:479 / 487
页数:8
相关论文
共 236 条
  • [1] Chantal G(2006)Laser processing for bio-microfluidics applications (Part I) Anal Bioanal Chem 385 1351-1361
  • [2] Khan M(2011)Toward a solid-phase nucleic acid hybridization assay within microfluidic channels using immobilized quantum dots as donors in fluorescence resonance energy transfer Anal Bioanal Chem 399 133-141
  • [3] Chen L(2010)An optical counting technique with vertical hydrodynamic focusing for biological cells Biomicrofluidics 4 024110-1884
  • [4] Algar WR(2011)On the fabrication of minimizing bulges and reducing the feature dimensions of microchannels using novel CO J Micromech Microeng 21 065023-114
  • [5] Tavares AJ(2005) laser micromachining J Micromech Microeng 15 1878-1256
  • [6] Krull UJ(2010)Bulge formation and improvement of the polymer in CO Biomed Microdevices 12 107-865
  • [7] Chiavaroli S(2011) laser micromachining Microfluid Nanofluid 11 1247-286
  • [8] Newport D(2011)Water-assisted CO Microfluid Nanofluid 10 855-445
  • [9] Woulfe B(2011) laser ablated glass and modified thermal bonding for capillary-driven bio-fluidic application Biomicrofluidics 5 044115-1133
  • [10] Chung CK(2008)Application of reconfigurable pinhole mask with excimer laser to fabricate microfluidic components J Micromech Microeng 18 035020-487