Controlling the orientation of complex molecules in molecular junctions is crucial to their development into functional devices. To date, this has been achieved through the use of multipodal compounds (i.e., containing more than two anchoring groups), resulting in the formation of tri/tetrapodal compounds. While such compounds have greatly improved orientation control, this comes at the cost of lower surface coverage. In this study, we examine an alternative approach for generating multimodal compounds by binding multiple independent molecular wires together through metal coordination to form a molecular bundle. This was achieved by coordinating iron(II) and cobalt(II) to 5,5′-bis(methylthio)-2,2′-bipyridine (L1) and (methylenebis(4,1-pheny...
Nature has developed supramolecular constructs to deliver outstanding charge-transport capabilities ...
The synthesis of two new cruciform structures 3 and 4 comprising an oligo(phenylene-vinylene) (OPV) ...
Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable mole...
In this review the recent progress in molecular platforms that form rigid and well-defined contact t...
A series of X(depe)2FeC≡C–C≡CFe(depe)2X complexes (depe =1,2-bis(diethylphosphino)ethane; X = I 1, N...
The introduction of methylthioethers to the molecular wire 1,4-bis(pyridylethynyl)benzene gives rise...
Porphyrin-based molecular wires are promising candidates for nanoelectronic and photovoltaic devices...
The realization of molecular electronics demands a detailed knowledge of the correlation between che...
We describe a new strategy for the in situ growth of molecular wires predicated on the synthesis of ...
Abstract: The realization of molecular-scale electronic devices will require the development of nove...
Self-assembly of organic molecules represents an efficient and convenient bottom-up approach for the...
Metal complexes are receiving increased attention as molecular wires in fundamental studies of the t...
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
A series of X(depe)<sub>2</sub>FeCC–CCFe(depe)<sub>2</sub>X complexes (depe =1,2-bis(diethylpho...
In this thesis, molecules on metal surfaces are explored using low-temperature scanning tunneling mi...
Nature has developed supramolecular constructs to deliver outstanding charge-transport capabilities ...
The synthesis of two new cruciform structures 3 and 4 comprising an oligo(phenylene-vinylene) (OPV) ...
Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable mole...
In this review the recent progress in molecular platforms that form rigid and well-defined contact t...
A series of X(depe)2FeC≡C–C≡CFe(depe)2X complexes (depe =1,2-bis(diethylphosphino)ethane; X = I 1, N...
The introduction of methylthioethers to the molecular wire 1,4-bis(pyridylethynyl)benzene gives rise...
Porphyrin-based molecular wires are promising candidates for nanoelectronic and photovoltaic devices...
The realization of molecular electronics demands a detailed knowledge of the correlation between che...
We describe a new strategy for the in situ growth of molecular wires predicated on the synthesis of ...
Abstract: The realization of molecular-scale electronic devices will require the development of nove...
Self-assembly of organic molecules represents an efficient and convenient bottom-up approach for the...
Metal complexes are receiving increased attention as molecular wires in fundamental studies of the t...
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
A series of X(depe)<sub>2</sub>FeCC–CCFe(depe)<sub>2</sub>X complexes (depe =1,2-bis(diethylpho...
In this thesis, molecules on metal surfaces are explored using low-temperature scanning tunneling mi...
Nature has developed supramolecular constructs to deliver outstanding charge-transport capabilities ...
The synthesis of two new cruciform structures 3 and 4 comprising an oligo(phenylene-vinylene) (OPV) ...
Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable mole...