Issue 1, 2020

Resolving the internal morphology of core–shell microgels with super-resolution fluorescence microscopy

Abstract

We investigate the internal morphology of smart core–shell microgels by super-resolution fluorescence microscopy exploiting a combination of 3D single molecule localization and structured illumination microscopy utilizing freely diffusing fluorescent dyes. This approach does not require any direct chemical labeling and does not perturb the network structure of these colloidal gels. Hence, it allows us to study the morphology of the particles with very high precision. We found that the structure of the core-forming seed particles is drastically changed by the second synthesis step necessary for making the shell, resulting in a core region with highly increased dye localization density. The present work shows that super-resolution microscopy has great potential with respect to the study of soft colloidal systems.

Graphical abstract: Resolving the internal morphology of core–shell microgels with super-resolution fluorescence microscopy

Supplementary files

Article information

Article type
Paper
Submitted
24 Oct 2019
Accepted
28 Nov 2019
First published
28 Nov 2019
This article is Open Access
Creative Commons BY-NC license

Nanoscale Adv., 2020,2, 323-331

Resolving the internal morphology of core–shell microgels with super-resolution fluorescence microscopy

P. Otto, S. Bergmann, A. Sandmeyer, M. Dirksen, O. Wrede, T. Hellweg and T. Huser, Nanoscale Adv., 2020, 2, 323 DOI: 10.1039/C9NA00670B

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