Nanocapillary electrokinetic tracking for monitoring charge fluctuations on a single nanoparticle

Author:

Faez Sanli12345,Samin Sela62345,Baasanjav Dashdeleg12345,Weidlich Stefan7891011,Schmidt Markus10119,Mosk Allard P.12345

Affiliation:

1. Debye Institute for Nanomaterials Research

2. Center for Extreme Matter and Emergent Phenomena

3. Utrecht University

4. 3584CC Utrecht

5. The Netherlands

6. Institute for Theoretical Physics

7. Heraeus Quarzglas GmbH and Co. KG

8. 63450 Hanau

9. Germany

10. Leibnitz Institute of Photonic Technology

11. Jena

Abstract

We introduce nanoCapillary Electrokinetic Tracking (nanoCET), an optofluidic platform for continuously measuring the electrophoretic mobility of a single colloidal nanoparticle or macromolecule in vitro with millisecond time resolution and high charge sensitivity. This platform is based on using a nanocapillary optical fiber in which liquids may flow inside a channel embedded inside the light-guiding core and nanoparticles are tracked using elastic light scattering. Using this platform we have experimentally measured the electrophoretic mobility of 60 nm gold nanoparticles in an aqueous environment. Further, using numerical simulations, we demonstrate the underlying electrokinetic dynamics inside the nanocapillary and the necessary steps for extending this method to probing single biomolecules, which can be achieved with existing technologies. This achievement will immensely facilitate the daunting challenge of monitoring biochemical or catalytic reactions on a single entity over a wide range of timescales. The unique measurement capabilities of this platform pave the way for a wide range of discoveries in colloid science, analytical biochemistry, and medical diagnostics.

Funder

European Research Council

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry

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