2007
DOI: 10.1038/nnano.2007.346
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Nano-architectures by covalent assembly of molecular building blocks

Abstract: The construction of electronic devices from single molecular building blocks, which possess certain functions such as switching or rectifying and are connected by atomic-scale wires on a supporting surface, is an essential goal of molecular electronics. A key challenge is the controlled assembly of molecules into desired architectures by strong, that is, covalent, intermolecular connections, enabling efficient electron transport between the molecules and providing high stability. However, no molecular networks… Show more

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Cited by 1,272 publications
(1,241 citation statements)
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“…4 Furthermore, efforts have been made to synthesize functional porphyrins, which can be physisorbed, 5 chemically grafted, 6 or connected to form 2D grids on surfaces. 7 Previous research has focused on elucidating the coordination properties of physisorbed metalloporphyrins on surfaces by using ultra high vacuum STM 8, 9 or XPS. 10 However, STM under ambient conditions (either electrochemically assisted 11 or at a liquid-solid interface) 12,13 facilitates the submolecular imaging of dynamic processes at the interface between a solution and a surface.…”
Section: Introductionmentioning
confidence: 99%
“…4 Furthermore, efforts have been made to synthesize functional porphyrins, which can be physisorbed, 5 chemically grafted, 6 or connected to form 2D grids on surfaces. 7 Previous research has focused on elucidating the coordination properties of physisorbed metalloporphyrins on surfaces by using ultra high vacuum STM 8, 9 or XPS. 10 However, STM under ambient conditions (either electrochemically assisted 11 or at a liquid-solid interface) 12,13 facilitates the submolecular imaging of dynamic processes at the interface between a solution and a surface.…”
Section: Introductionmentioning
confidence: 99%
“…The latter can act as either logic gates or molecular wires for the transport of individual electrons, photons or magnetic moment in a similar way as observed for natural networks of neurons that serve as the basis for information processing and storage in the brains of living organisms [2][3][4][5][6] . However, current approaches for developing molecularly interconnected networks mainly rely on covalent chemistry 7,8 . Self-assembly as a tool to form long-range interconnected 1D-or 2D-nanostructures with tuneable optical, electrical and magnetic properties may represent a possible solution towards the mass production of molecular circuits.…”
mentioning
confidence: 99%
“…Functional nanomaterials by means of self-assembly have become a cutting-edge research of material fabrication [1]. Infinite coordination polymers (ICPs) are considered as a unique class of inorganic-organic hybrid materials with metal centers and organic linkers [2], which is one of the important hybrid functional nanomaterials.…”
Section: Introductionmentioning
confidence: 99%