Non-trivial arrangement of molecules within a molecular network complicates structure determination due to interdigitation, partial overlap, or stacking. We demonstrate that combined imaging and lateral manipulation with a scanning tunneling microscope resolves the intricate structure of a molecular network in two-dimensions in a straightforward manner. The network, formed by a monolayer of 5,10,15-tris(pentafluorophenyl)-corrole molecules on Ag(111), is manipulated for the first time with single-molecule precision. Our results reveal a shingle-like packing of partially overlapping corrole molecules. Density functional theory calculations support our findings.
Manipulation resolves non-trivial structure of corrole monolayer on Ag(111) / Tebi S.; Aldahhak H.; Serrano G.; Schofberger W.; Rauls E.; Schmidt W.G.; Koch R.; Mullegger S.. - In: NANOTECHNOLOGY. - ISSN 0957-4484. - STAMPA. - 27:(2016), pp. 025704-025708. [10.1088/0957-4484/27/2/025704]
Manipulation resolves non-trivial structure of corrole monolayer on Ag(111)
Serrano G.;
2016
Abstract
Non-trivial arrangement of molecules within a molecular network complicates structure determination due to interdigitation, partial overlap, or stacking. We demonstrate that combined imaging and lateral manipulation with a scanning tunneling microscope resolves the intricate structure of a molecular network in two-dimensions in a straightforward manner. The network, formed by a monolayer of 5,10,15-tris(pentafluorophenyl)-corrole molecules on Ag(111), is manipulated for the first time with single-molecule precision. Our results reveal a shingle-like packing of partially overlapping corrole molecules. Density functional theory calculations support our findings.File | Dimensione | Formato | |
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