Fluorescent‐Probe Characterization for Pore‐Space Mapping with Single‐Particle Tracking

Author:

González Rafael Mayorga1ORCID,Maris J. J. Erik1ORCID,Wagner Marita1ORCID,Ganjkhanlou Yadolah1ORCID,Bomer Johan G.2,Werny Maximilian J.1ORCID,Rabouw Freddy T.1ORCID,Weckhuysen Bert M.1ORCID,Odijk Mathieu2ORCID,Meirer Florian1ORCID

Affiliation:

1. Inorganic Chemistry and Catalysis Debye Institute for Nanomaterials Science and Institute for Sustainable and Circular Chemistry Utrecht University Universiteitsweg 99 3584 CG Utrecht The Netherlands

2. BIOS Lab on a Chip Group, MESA+ Institute for Nanotechnology University of Twente 7522 ME Enschede The Netherlands

Abstract

AbstractPorous solids often contain complex pore networks with pores of various sizes. Tracking individual fluorescent probes as they diffuse through porous materials can be used to characterize pore networks at tens of nanometers resolution. However, understanding the motion behavior of fluorescent probes in confinement is crucial to reliably derive pore network properties. Here, we introduce well‐defined lithography‐made model pores developed to study probe behavior in confinement. We investigated the influence of probe‐host interactions on diffusion and trapping of confined single‐emitter quantum‐dot probes. Using the pH‐responsiveness of the probes, we were able to largely suppress trapping at the pore walls. This enabled us to define experimental conditions for mapping of the accessible pore space of a one‐dimensional pore array as well as a real‐life polymerization‐catalyst‐support particle.

Publisher

Wiley

Subject

General Medicine

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