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Inter- and Intramolecular On-Surface Synthesis of Porphyrin-Based Nanostructures on Au(111) and Cu(111)

Frampton, Eleanor S; Clarke, Michael; Edmondson, Matthew; Gray, Ailish; Bradford, Jonathan; Warwick, Liv; Pearce, Nicholas; Champness, Neil R; Saywell, Alex

Inter- and Intramolecular On-Surface Synthesis of Porphyrin-Based Nanostructures on Au(111) and Cu(111) Thumbnail


Authors

Eleanor S Frampton

Michael Clarke

Matthew Edmondson

Ailish Gray

Liv Warwick

Nicholas Pearce

Neil R Champness



Abstract

Surface-confined synthesis provides alternative reaction pathways to those utilized within solution-phase chemistry and offers a route to extended molecular architectures with nanoscale dimensions and fascinating magnetic, electronic, and catalytic properties. However, these reaction pathways can be complex multistep processes, containing multiple reactive intermediates. Optimizing the selectivity and efficiency of such synthetic routes should be underpinned by detailed mechanistic insight, which requires submolecular spatial resolution in combination with details of chemical evolution throughout the reaction process. A key challenge is the application of an experimental methodology that allows in-depth study of multistep reactions. Here, we combine the spatial resolution of scanning tunneling microscopy with temperature-programmed photoelectron spectroscopies and present a comprehensive characterization of a multistep on-surface reaction utilizing a brominated porphyrin species. The porphyrin species employed is a highly functionalizable “molecular building block” from which nanostructured materials can be built, and within this work we identify key differences between the reaction on Cu(111) and Au(111). Intermolecular Ullmann-type coupling as well as intramolecular ring-closing and self-metalation are observed: specifically, on Au(111) we characterize self-metalation within covalently coupled assemblies of ring-closed TPP. Our results highlight the differing reactivity of Au(111) and Cu(111) and the strong influence of the substrate upon the reaction pathway and preferred products, and we provide spectroscopic and topographical characterization for all reaction steps.

Citation

Frampton, E. S., Clarke, M., Edmondson, M., Gray, A., Bradford, J., Warwick, L., Pearce, N., Champness, N. R., & Saywell, A. (2025). Inter- and Intramolecular On-Surface Synthesis of Porphyrin-Based Nanostructures on Au(111) and Cu(111). ACS Applied Nano Materials, 8(24), 12608-12618. https://doi.org/10.1021/acsanm.5c01525

Journal Article Type Article
Acceptance Date May 24, 2025
Online Publication Date Jun 10, 2025
Publication Date Jun 20, 2025
Deposit Date Jun 19, 2025
Publicly Available Date Jun 19, 2025
Journal ACS Applied Nano Materials
Print ISSN 2574-0970
Electronic ISSN 2574-0970
Publisher American Chemical Society
Peer Reviewed Peer Reviewed
Volume 8
Issue 24
Pages 12608-12618
DOI https://doi.org/10.1021/acsanm.5c01525
Public URL https://nottingham-repository.worktribe.com/output/50436868
Publisher URL https://pubs.acs.org/doi/10.1021/acsanm.5c01525

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