We assess the performances of the transition voltage spectroscopy (TVS) method to determine the energies of the molecular orbitals involved in the electronic transport through molecular junctions. A large number of various molecular junctions made with alkyl chains but with different chemical structure of the electrode/molecule interfaces are studied. In the case of molecular junctions with “clean, unoxidized” electrode/molecule interfaces, that is, alkylthiols and alkenes directly grafted on Au and hydrogenated Si, respectively, we measure transition voltages in the range 0.9–1.4 V. We conclude that the TVS method allows estimating the onset of the tail of the LUMO density of states, at energy located 1.0–1.2 eV above the electrode Fermi e...
Using saturated alkyl chain series with a dithiol anchor group, we systematically examined the intri...
Understanding charge transport of single molecules or a small collection of molecules sandwiched bet...
Understanding how molecular conductance depends on voltage is essential for characterizing molecular...
Nous avons évalué la méthode de "Transition Voltage Spectroscopy" (TVS) pour déterminer le niveau d...
Nous avons évalué la méthode de "Transition Voltage Spectroscopy" (TVS) pour déterminer le niveau d...
We investigated the charge transport characteristics of alkanemonothiol (C<sub><i>n</i></sub>H<sub>2...
Though molecular devices exhibiting potentially useful electrical behavior have been demonstrated, a...
The promise of transition voltage spectroscopy (TVS) is that molecular level positions can be determ...
In molecular charge transport, transition voltage spectroscopy (TVS) holds the promise that molecula...
In molecular charge transport, transition voltage spectroscopy (TVS) holds the promise that molecula...
Electron transport through single molecule connected to the electrodes is an interesting problem fro...
Electronic transport across n-Si-alkyl monolayer/Hg junctions is, at reverse and low forward bias, i...
Electron transport through single molecule connected to the electrodes is an interesting problem fro...
Electronic transport across n-Si-alkyl monolayer/Hg junctions is, at reverse and low forward bias, i...
The transition voltage of three different asymmetric Au/poly(phenylene) thiol/Au molecular junctions...
Using saturated alkyl chain series with a dithiol anchor group, we systematically examined the intri...
Understanding charge transport of single molecules or a small collection of molecules sandwiched bet...
Understanding how molecular conductance depends on voltage is essential for characterizing molecular...
Nous avons évalué la méthode de "Transition Voltage Spectroscopy" (TVS) pour déterminer le niveau d...
Nous avons évalué la méthode de "Transition Voltage Spectroscopy" (TVS) pour déterminer le niveau d...
We investigated the charge transport characteristics of alkanemonothiol (C<sub><i>n</i></sub>H<sub>2...
Though molecular devices exhibiting potentially useful electrical behavior have been demonstrated, a...
The promise of transition voltage spectroscopy (TVS) is that molecular level positions can be determ...
In molecular charge transport, transition voltage spectroscopy (TVS) holds the promise that molecula...
In molecular charge transport, transition voltage spectroscopy (TVS) holds the promise that molecula...
Electron transport through single molecule connected to the electrodes is an interesting problem fro...
Electronic transport across n-Si-alkyl monolayer/Hg junctions is, at reverse and low forward bias, i...
Electron transport through single molecule connected to the electrodes is an interesting problem fro...
Electronic transport across n-Si-alkyl monolayer/Hg junctions is, at reverse and low forward bias, i...
The transition voltage of three different asymmetric Au/poly(phenylene) thiol/Au molecular junctions...
Using saturated alkyl chain series with a dithiol anchor group, we systematically examined the intri...
Understanding charge transport of single molecules or a small collection of molecules sandwiched bet...
Understanding how molecular conductance depends on voltage is essential for characterizing molecular...