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Saddles as rotational locks within shape-assisted self-assembled nanosheets

Woods, Joseph F; Gallego, Lucía; Maisch, Amira; Renggli, Dominik; Cuocci, Corrado; Blacque, Olivier; Steinfeld, Gunther; Kaech, Andres; Spingler, Bernhard; Vargas Jentzsch, Andreas; Rickhaus, Michel (2023). Saddles as rotational locks within shape-assisted self-assembled nanosheets. Nature Communications, 14(1):4725.

Abstract

Two-dimensional (2D) materials are a key target for many applications in the modern day. Self-assembly is one approach that can bring us closer to this goal, which usually relies upon strong, directional interactions instead of covalent bonds. Control over less directional forces is more challenging and usually does not result in as well-defined materials. Explicitly incorporating topography into the design as a guiding effect to enhance the interacting forces can help to form highly ordered structures. Herein, we show the process of shape-assisted self-assembly to be consistent across a range of derivatives that highlights the restriction of rotational motion and is verified using a diverse combination of solid state analyses. A molecular curvature governed angle distribution nurtures monomers into loose columns that then arrange to form 2D structures with long-range order observed in both crystalline and soft materials. These features strengthen the idea that shape becomes an important design principle leading towards precise molecular self-assembly and the inception of new materials.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Department of Chemistry
04 Faculty of Medicine > Center for Microscopy and Image Analysis
Dewey Decimal Classification:540 Chemistry
Scopus Subject Areas:Physical Sciences > General Chemistry
Life Sciences > General Biochemistry, Genetics and Molecular Biology
Physical Sciences > General Physics and Astronomy
Uncontrolled Keywords:General Physics and Astronomy, General Biochemistry, Genetics and Molecular Biology, General Chemistry, Multidisciplinary
Language:English
Date:7 August 2023
Deposited On:20 Sep 2023 09:57
Last Modified:29 Dec 2024 02:39
Publisher:Nature Publishing Group
ISSN:2041-1723
OA Status:Gold
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1038/s41467-023-40475-8
PubMed ID:37550281
Other Identification Number:PMCID: PMC10406840
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  • Content: Published Version
  • Language: English
  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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