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Publisher's Note: “Toward printing molecular nanostructures from microstructured samples in ultrahigh vacuum” [J. Vac. Sci. Technol. B 34, 011801 (2016)] (2016)
Journal Article
Nacci, C., Saywell, A., Troadec, C., Deng, J., Willinger, M. G., Joachim, C., & Grill, L. (2016). Publisher's Note: “Toward printing molecular nanostructures from microstructured samples in ultrahigh vacuum” [J. Vac. Sci. Technol. B 34, 011801 (2016)]. Journal of Vacuum Science and Technology B, 34(5), Article 053401. https://doi.org/10.1116/1.4962725

This article was originally published online on 7 December 2015 without one of the authors. All online versions of the article were corrected on 23 September 2016; the article is correct as it appears in the printed version of the journal.

Organisation and ordering of 1D porphyrin polymers synthesised by on-surface Glaser coupling (2016)
Journal Article
Saywell, A., Browning, A. S., Rahe, P., Anderson, H. L., & Beton, P. H. (2016). Organisation and ordering of 1D porphyrin polymers synthesised by on-surface Glaser coupling. Chemical Communications, 52(68), 10342-10345. https://doi.org/10.1039/C6CC03758E

One-dimensional polymer chains consisting of ?-conjugated porphyrin units are formed via Glaser coupling on a Ag(111) surface. Scanning probe microscopy reveals the covalent structure of the products and their ordering. The conformational flexibility... Read More about Organisation and ordering of 1D porphyrin polymers synthesised by on-surface Glaser coupling.

Toward printing molecular nanostructures from microstructured samples in ultrahigh vacuum (2015)
Journal Article
Nacci, C., Saywell, A., Troadec, C., Deng, J., Willinger, M. G., Joachim, C., & Grill, L. (2015). Toward printing molecular nanostructures from microstructured samples in ultrahigh vacuum. Journal of Vacuum Science and Technology B, 34(1), https://doi.org/10.1116/1.4936886

Transferring molecular nanostructures from one surface to another in ultrahigh vacuum (UHV) by mechanical contact might be a possible route to avoid the severe limitations of in situ molecular synthesis on technologically relevant template surfaces.... Read More about Toward printing molecular nanostructures from microstructured samples in ultrahigh vacuum.

Physisorption controls the conformation and density of states of an adsorbed porphyrin (2015)
Journal Article
Jarvis, S. P., Taylor, S., Baran, J. D., Thompson, D., Saywell, A., Mangham, B., …Moriarty, P. (2015). Physisorption controls the conformation and density of states of an adsorbed porphyrin. Journal of Physical Chemistry C, 119(50), 27982-27994. https://doi.org/10.1021/acs.jpcc.5b08350

Conformational changes caused by adsorption can dramatically affect a molecule’s properties. Despite extensive study, however, the exact mechanisms underpinning conformational switching are often unclear. Here we show that the conformation of a proto... Read More about Physisorption controls the conformation and density of states of an adsorbed porphyrin.

Vernier-Templated Synthesis, Crystal Structure, and Supramolecular Chemistry of a 12-Porphyrin Nanoring (2014)
Journal Article
Kondratuk, D. V., Sprafke, J. K., O'Sullivan, M. C., Perdigão, L. M., Saywell, A., Malfois, M., …Anderson, H. L. (2014). Vernier-Templated Synthesis, Crystal Structure, and Supramolecular Chemistry of a 12-Porphyrin Nanoring. Chemistry - A European Journal, 20(40), 12826-12834. https://doi.org/10.1002/chem.201403714

Vernier templating exploits a mismatch between the number of binding sites in a template and a reactant to direct the formation of a product that is large enough to bind several template units. Here, we present a detailed study of the Vernier-templat... Read More about Vernier-Templated Synthesis, Crystal Structure, and Supramolecular Chemistry of a 12-Porphyrin Nanoring.

Manipulating the Conformation of Single Organometallic Chains on Au(111) (2013)
Journal Article
Saywell, A., Gre?, W., Franc, G., Gourdon, A., Bouju, X., & Grill, L. (2014). Manipulating the Conformation of Single Organometallic Chains on Au(111). Journal of Physical Chemistry C, 118(3), 1719-1728. https://doi.org/10.1021/jp409323g

The conformations of organometallic polymers formed via the bottom-up assembly of monomer units on a metal surface are investigated, and the relationship between the adsorption geometry of the individual monomer units, the conformational structure of... Read More about Manipulating the Conformation of Single Organometallic Chains on Au(111).