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Strategies for the selective loading of patchy worm-like micelles with functional nanoparticles

Title data

Schöbel, Judith ; Hils, Christian ; Weckwerth, Anne ; Schlenk, Mathias ; Bojer, Carina ; Stuart, Marc C. A. ; Breu, Josef ; Förster, Stephan ; Greiner, Andreas ; Karg, Matthias ; Schmalz, Holger:
Strategies for the selective loading of patchy worm-like micelles with functional nanoparticles.
In: Nanoscale. Vol. 10 (2018) Issue 38 . - pp. 18257-18268.
ISSN 2040-3372
DOI: https://doi.org/10.1039/c8nr05935g

Project information

Project financing: Deutsche Forschungsgemeinschaft

Abstract in another language

Block copolymer self-assembly in solution paves the way for the construction of well-defined compartmentalized nanostructures. These are excellent templates for the incorporation and stabilisation of nanoparticles (NPs), giving rise to highly relevant applications in the field of catalysis or sensing. However, the regio-selective incorporation of NPs in specific compartments is still an issue, especially concerning the loading with different NP types. Using crystallisation-driven self-assembly (CDSA), functional worm-like crystalline-core micelles (wCCMs) with a tailor-made, nanometre-sized patchy corona were prepared as versatile templates for the incorporation and stabilisation of metal and metal oxide NPs. Different strategies, like ligand exchange or co-precipitation of polymer stabilised NPs with one surface patch, were developed that allow the incorporation of NPs in specific regions of the patchy wCCM corona. Independent of the NP type and the incorporation method, the NPs showed no tendency for agglomeration and were fixed within the corona patches of the wCCMs. The binary loading of patchy micelles with metal and metal oxide NPs was realised by combining different loading strategies, yielding hybrids with homogeneously dispersed NPs guided by the patchy structure of the template.

Further data

Item Type: Article in a journal
Refereed: Yes
Keywords: crystalline-core micelles; block-copolymer micelles; cylindrical micelles; metal nanoparticles; gold nanoparticles; mediated synthesis; ligand-exchange; nanostructures; architectures; corona
Institutions of the University: Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Chemistry > Chair Inorganic Chemistry I
Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Chemistry > Chair Inorganic Chemistry I > Chair Inorganic Chemistry I - Univ.-Prof. Dr. Josef Breu
Faculties
Faculties > Faculty of Biology, Chemistry and Earth Sciences
Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Chemistry
Result of work at the UBT: Yes
DDC Subjects: 500 Science > 540 Chemistry
Date Deposited: 03 Dec 2019 13:08
Last Modified: 03 Dec 2019 13:08
URI: https://eref.uni-bayreuth.de/id/eprint/53455