6 Publikationen

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  • [6]
    2015 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2758724
    Bartke, M., et al., 2015. DNA-Mediated Stabilization of Self-Assembling Bead Monolayers for Microfluidic Applications. Particle & Particle Systems Characterization, 32(5), p 583-587.
    PUB | DOI | WoS
     
  • [5]
    2014 | Bielefelder E-Dissertation | PUB-ID: 2664448 OA
    Eickenberg, B., 2014. Superparamagnetic beads as self-assembling matter for microfluidic applications, Bielefeld: Bielefeld University.
    PUB | PDF
     
  • [4]
    2013 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2565665
    Eickenberg, B., et al., 2013. Continuous-flow particle guiding based on dipolar coupled magnetic superstructures in rotating magnetic fields. Lab On A Chip, 13(5), p 920-927.
    PUB | DOI | WoS | PubMed | Europe PMC
     
  • [3]
    2012 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2493183
    Wittbracht, F., et al., 2012. Enhanced fluid mixing and separation of magnetic bead agglomerates based on dipolar interaction in rotating magnetic fields. Applied Physics Letters, 100(12): 123507.
    PUB | DOI | WoS
     
  • [2]
    2012 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2544221
    Wittbracht, F., et al., 2012. On the direct employment of dipolar particle interaction in microfluidic systems. Microfluidics And Nanofluidics, 13(4), p 543-554.
    PUB | DOI | WoS
     
  • [1]
    2009 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1591405
    Weddemann, A., et al., 2009. A combined reaction-separation lab-on-a-chip device for low Peclet number applications. Journal of Applied Physics, 106(2): 024510.
    PUB | DOI | WoS
     

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