4.8 Article

Biased Cyclical Electrical Field Flow Fractionation for Separation of Sub 50 nm Particles

Journal

ANALYTICAL CHEMISTRY
Volume 85, Issue 23, Pages 11225-11232

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ac401331z

Keywords

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Funding

  1. National Science Foundation's (NSF) Chemical, Biological and Environmental Transport program [0967037]
  2. TUBITAK (The Scientific and Technical Council of Turkey)
  3. Div Of Chem, Bioeng, Env, & Transp Sys
  4. Directorate For Engineering [0967037] Funding Source: National Science Foundation

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Cyclical electrical field flow fractionation (CyElFFF) is a technique for characterizing and separating nanoparticles based on their size and charge using cyclical electric fields. The high diffusion rate of nanoparticles has prevented CyElFFF from being applicable to particles smaller than 100 nm. In this work, the diffusion challenges associated with nanoparticles was resolved using biased cyclical electric fields. This new method, biased cyclical electrical field flow fractionation (BCyElFFF), achieves baseline separation of 15 and 40 nm gold nanoparticles. Theoretical considerations show that the optimal resolution is achieved when the applied bias yields electrical transport that counteracts the diffusive transport of nanoparticles. BCyElFFF greatly extends separation capabilities of the cyclical electrical field flow fractionation to sub 50 nm nanoparticles and provides a powerful alternative to other separation and characterization techniques capable of separating nanoparticles smaller than 50 nm.

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