We have designed and synthesized five azulene derivatives containing gold-binding groups at different points of connectivity within the azulene core to probe the effects of quantum interference through single-molecule conductance measurements. We compare conducting paths through the 5-membered ring, 7-membered ring, and across the long axis of azulene. We find that changing the points of connectivity in the azulene impacts the optical properties (as determined from UV–vis absorption spectra) and the conductivity. Importantly, we show here that simple models cannot be used to predict quantum interference characteristics of nonalternant hydrocarbons. As an exemplary case, we show that azulene derivatives that are predicted to exhibit destruct...
Coherent electronic transport through individual molecules is crucially sensitive to quantum inter...
Heteroatom substitution into the cores of alternant, aromatic hydrocarbons containing only even‐memb...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
Abstract. We have studied the feasibility of electron conduction in azulene molecule and compared wi...
The protonation of azulene derivatives with quantum interference effects is studied by the conductan...
Azulene (Az) is a non-alternating, aromatic hydrocarbon composed of a five-membered, electron-rich a...
Cumulenes are sometimes described as “metallic” because an infinitely long cumulene would have the b...
Cumulenes are sometimes described as “metallic” because an infinitely long cumulene would have the b...
Cumulenes are sometimes described as “metallic” because an infinitely long cumulene would have the b...
Coherent electronic transport through individual molecules is crucially sensitive to quantum interfe...
If design principles for controlling quantum interference in single molecules could be elucidated an...
Azulene is a prototypical molecule with ananomalousfluorescence from the second excited electronic s...
Is there a correlation between the (hetero)aromaticity of the core of a molecule and its conductance...
We studied the electrical conductance of single-molecule junctions formed from molecular wires with ...
Controlling charge transport through molecular wires by utilizing quantum interference (QI) is a gro...
Coherent electronic transport through individual molecules is crucially sensitive to quantum inter...
Heteroatom substitution into the cores of alternant, aromatic hydrocarbons containing only even‐memb...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
Abstract. We have studied the feasibility of electron conduction in azulene molecule and compared wi...
The protonation of azulene derivatives with quantum interference effects is studied by the conductan...
Azulene (Az) is a non-alternating, aromatic hydrocarbon composed of a five-membered, electron-rich a...
Cumulenes are sometimes described as “metallic” because an infinitely long cumulene would have the b...
Cumulenes are sometimes described as “metallic” because an infinitely long cumulene would have the b...
Cumulenes are sometimes described as “metallic” because an infinitely long cumulene would have the b...
Coherent electronic transport through individual molecules is crucially sensitive to quantum interfe...
If design principles for controlling quantum interference in single molecules could be elucidated an...
Azulene is a prototypical molecule with ananomalousfluorescence from the second excited electronic s...
Is there a correlation between the (hetero)aromaticity of the core of a molecule and its conductance...
We studied the electrical conductance of single-molecule junctions formed from molecular wires with ...
Controlling charge transport through molecular wires by utilizing quantum interference (QI) is a gro...
Coherent electronic transport through individual molecules is crucially sensitive to quantum inter...
Heteroatom substitution into the cores of alternant, aromatic hydrocarbons containing only even‐memb...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...