Molecule–electrode contact atomic structures are a critical factor that characterizes molecular devices, but their precise understanding and control still remain elusive. Based on combined first-principles calculations and single-molecule break junction experiments, we herein establish that the conductance of alkanedithiolate junctions can both increase and decrease with mechanical stretching, and the specific trend is determined by the S–Au linkage coordination number (CN) or the molecule–electrode contact atomic structure. Specifically, we find that the mechanical pulling results in the conductance increase for the junctions based on S–Au CN two and CN three contacts, while the conductance is minimally affected by stretching for junctions...
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
Revealing the mechanisms of electronic transport through metal-molecule interfaces is of central imp...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
We demonstrate that conductance can act as a sensitive probe of conformational dynamics and electrod...
We use a modified conducting atomic force microscope to simultaneously probe the conductance of a si...
Abstract Measurement of electronics and mechanics of single molecules provides a fundamental underst...
The configuration of the molecule–electrode contact region plays an important role in determining th...
The changes of molecular conformation, contact geometry, and metal-molecule bonding are revealed by ...
Ab initio molecular dynamics simulations have been performed of a gold-1,4-benzenedithiol (BDT)-gold...
Providing a mechanically stable and electronically efficient coupling between a molecule and an elec...
We analyze the formation and evolution statistics of single-molecule junctions bonded to gold electr...
We have investigated charge transport in single-molecule junctions using gold nanoelectrodes at room...
We measure the conductance of amine-terminated molecules by breaking Au point contacts in a molecula...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
ConspectusOver the past 10 years, there has been tremendous progress in the measurement, modeling an...
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
Revealing the mechanisms of electronic transport through metal-molecule interfaces is of central imp...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
We demonstrate that conductance can act as a sensitive probe of conformational dynamics and electrod...
We use a modified conducting atomic force microscope to simultaneously probe the conductance of a si...
Abstract Measurement of electronics and mechanics of single molecules provides a fundamental underst...
The configuration of the molecule–electrode contact region plays an important role in determining th...
The changes of molecular conformation, contact geometry, and metal-molecule bonding are revealed by ...
Ab initio molecular dynamics simulations have been performed of a gold-1,4-benzenedithiol (BDT)-gold...
Providing a mechanically stable and electronically efficient coupling between a molecule and an elec...
We analyze the formation and evolution statistics of single-molecule junctions bonded to gold electr...
We have investigated charge transport in single-molecule junctions using gold nanoelectrodes at room...
We measure the conductance of amine-terminated molecules by breaking Au point contacts in a molecula...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
ConspectusOver the past 10 years, there has been tremendous progress in the measurement, modeling an...
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
Revealing the mechanisms of electronic transport through metal-molecule interfaces is of central imp...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...