"Overpass" at the junction of a crossed microchannel: An enabler for 3D microfluidic chips

被引:30
|
作者
He, Yan [1 ]
Huang, Bai-Ling [1 ]
Lu, Dong-Xiao [2 ]
Zhao, Jia [2 ]
Xu, Bin-Bin [1 ]
Zhang, Ran [1 ]
Lin, Xiao-Feng [1 ]
Chen, Qi-Dai [1 ]
Wang, Juan [1 ]
Zhang, Yong-Lai [1 ]
Sun, Hong-Bo [1 ,2 ]
机构
[1] Jilin Univ, Coll Elect Sci & Engn, State Key Lab Integrated Optoelect, Changchun 130012, Peoples R China
[2] Jilin Univ, Coll Phys, Changchun 130023, Peoples R China
基金
美国国家科学基金会;
关键词
ON-A-CHIP; FABRICATION; DEVICES; SYSTEMS; NETWORKS; PDMS; LAB;
D O I
10.1039/c2lc40401j
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Reported here is the design and fabrication of three-dimensional (3D) "overpass" microstructures at the junction of crossed microfluidic channels by femtosecond laser direct writing of photopolymers. The post-integrated overpass could be used for guiding different microfluids across the junction without mixing; therefore it is proposed as an enabler for achieving 3D microfluidic chips based on conventional two-dimensional (2D) microchannels. As representative examples, bi-crossed and tri-crossed microchannels have been equipped with bi-connected and tri-connected overpasses, respectively. Flow tests confirm 3D flowing capability. The integration of such overpass structures at the microchannel junction provides an opportunity to impart 3D capability to conventional 2D microchips, thus the method may hold great promise for both functionalization and miniaturization of Lab-on-a-Chip systems.
引用
收藏
页码:3866 / 3869
页数:4
相关论文
共 50 条
  • [1] Functional 3D Printing for Microfluidic Chips
    Weisgrab, Gregor
    Ovsionikov, Aleksandr
    Costa, Pedro F.
    [J]. ADVANCED MATERIALS TECHNOLOGIES, 2019, 4 (10)
  • [2] Printing 3D microfluidic chips with a 3D sugar printer
    Yong He
    Jingjiang Qiu
    Jianzhong Fu
    Jiong Zhang
    Yina Ren
    An Liu
    [J]. Microfluidics and Nanofluidics, 2015, 19 : 447 - 456
  • [3] Printing 3D microfluidic chips with a 3D sugar printer
    He, Yong
    Qiu, Jingjiang
    Fu, Jianzhong
    Zhang, Jiong
    Ren, Yina
    Liu, An
    [J]. MICROFLUIDICS AND NANOFLUIDICS, 2015, 19 (02) : 447 - 456
  • [4] Research on Integrated 3D Printing of Microfluidic Chips
    Wu, Chuang
    Sun, Jiju
    Yin, Binfeng
    [J]. MICROMACHINES, 2023, 14 (07)
  • [5] Wax-bonding 3D microfluidic chips
    Gong, Xiuqing
    Yi, Xin
    Xiao, Kang
    Li, Shunbo
    Kodzius, Rimantas
    Qin, Jianhua
    Wen, Weijia
    [J]. LAB ON A CHIP, 2010, 10 (19) : 2622 - 2627
  • [6] 3D Bioprinted Microfluidic Chips With Tunable Microstructure
    Miri, A.
    [J]. TISSUE ENGINEERING PART A, 2023, 29 (9-10)
  • [7] Engineering 3D Printed Microfluidic Chips for the Fabrication of Nanomedicines
    Kara, Aytug
    Vassiliadou, Athina
    Ongoren, Baris
    Keeble, William
    Hing, Richard
    Lalatsa, Aikaterini
    Serrano, Dolores R.
    [J]. PHARMACEUTICS, 2021, 13 (12)
  • [8] Engineering neurovascular organoids with 3D printed microfluidic chips
    Salmon, Idris
    Grebenyuk, Sergei
    Fattah, Abdel Rahman Abdel
    Rustandi, Gregorius
    Pilkington, Thomas
    Verfaillie, Catherine
    Ranga, Adrian
    [J]. LAB ON A CHIP, 2022, 22 (08) : 1615 - 1629
  • [9] Integrated Microfluidic Cooling and Interconnects for 2D and 3D Chips
    Dang, Bing
    Bakir, Muhannad S.
    Sekar, Deepak Chandra
    King, Calvin R., Jr.
    Meindl, James D.
    [J]. IEEE TRANSACTIONS ON ADVANCED PACKAGING, 2010, 33 (01): : 79 - 87
  • [10] 3D stacking of chips with electrical and microfluidic I/O interconnects
    King, Calvin R., Jr.
    Sekar, Deepak
    Bakir, Muhannad S.
    Dang, Bing
    Pikarsky, Joel
    Meindl, James D.
    [J]. 58TH ELECTRONIC COMPONENTS & TECHNOLOGY CONFERENCE, PROCEEDINGS, 2008, : 1 - +