Tracking On-Surface Chemistry with Atomic Precision
Publication date
2017-12-01
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taverne
Abstract
The field of on-surface synthesis has seen a tremendous development in the past decade as an exciting new methodology towards atomically well-defined nanostructures. A strong driving force in this respect is its inherent compatibility with scanning probe techniques, which allows one to ‘view’ the reactants and products at the single-molecule level. In this article, we review the ability of noncontact atomic force microscopy to study on-surface chemical reactions with atomic precision. We highlight recent advances in using noncontact atomic force microscopy to obtain mechanistic insight into reactions and focus on the recently elaborated mechanisms in the formation of different types of graphene nanoribbons.
Keywords
atomic force microscopy, graphene nanoribbons, on-surface synthesis, polycyclic aromatic hydrocarbons, single molecule, Taverne
Citation
Jacobse, P H, Moret, M E, Klein Gebbink, R J M & Swart, I 2017, 'Tracking On-Surface Chemistry with Atomic Precision', Synlett, vol. 28, no. 19, pp. 2509-2516. https://doi.org/10.1055/s-0036-1590867