Negatively Curved Nanohoops as Cut-Outs of Carbon Toroids and Schwarzites

Abstract Nanographenes with negative curvature are often considered as cutouts of proposed new carbon allotropes such as toroids and schwarzites. While the synthesis of cutouts of such structures to date has been limited to smaller areas, here we present the synthesis of negatively curved nanohoops with 152, 228, and 304 toroid or schwarzite resembling carbons. Structural elucidation of two nanohoops by single-crystal X-ray diffraction analysis as well as supramolecular interactions with fullerenes in solution and their structural comparison to the corresponding macrostructures is presented.

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Publication Details

Journal
Journal of the American Chemical Society
Published
2026-09-21
DOI
https://doi.org/10.1021/jacs.6c13192
Primary Topic
Fullerene Chemistry and Applications
Type
article
Field-Weighted Citation Impact
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article

Negatively Curved Nanohoops as Cut-Outs of Carbon Toroids and Schwarzites

Michael Mastalerz, Owen T. A. Paine, Moritz P. Schuldt, Sven M. Elbert et al.
Journal of the American Chemical Society
Fullerene Chemistry and Applications
article

Negatively Curved Nanohoops as Cut-Outs of Carbon Toroids and Schwarzites

Michael Mastalerz, Owen T. A. Paine, Moritz P. Schuldt, Sven M. Elbert, Anusha Sounder Rajan, Frank Rominger, Marie S. Spiller, Elena M. von Weyhrother, Moritz Websky
article en

Abstract

Abstract Nanographenes with negative curvature are often considered as cutouts of proposed new carbon allotropes such as toroids and schwarzites. While the synthesis of cutouts of such structures to date has been limited to smaller areas, here we present the synthesis of negatively curved nanohoops with 152, 228, and 304 toroid or schwarzite resembling carbons. Structural elucidation of two nanohoops by single-crystal X-ray diffraction analysis as well as supramolecular interactions with fullerenes in solution and their structural comparison to the corresponding macrostructures is presented.

Journal of the American Chemical Society
Heidelberg University (DE)
Openalex Percentile: Top 21%
Fullerene Chemistry and Applications
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