To explore the charge transport through metalla-aromatics building blocks, three metallacycles complexes were synthesized, and their single-molecule conductances were characterized by using mechanically controllable break junction technique. It is found that the conductance of the metallacycles junction with phosphonium group is more than 1 order of magnitude higher than that without phosphonium group. X-ray diffraction and UV–vis absorption spectroscopy suggested that the attached phosphonium group makes metallacycles more delocalized, which shortened the preferred charge transport pathway and significantly enhanced the single-molecule conductance. This work revealed that the delocalization of metalla-aromatics could be used to switch the ...
Abstract: The realization of molecular-scale electronic devices will require the development of nove...
We have measured the conductance of single-molecule junctions created with three different molecular...
The molecule–metal coupling in molecular junctions is investigated at the single-molecule level by a...
The creation of molecular components for use as electronic devices has made enormous progress. In or...
Host−guest interactions are of central importance in many biological and chemical processes. However...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
ConspectusThis Account provides an overview of our recent efforts to unravel charge transport charac...
Understanding the transport characteristics of single molecules bonded between metal electrodes is o...
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
We explore both experimentally and theoretically the conductance and packing of molecular junctions ...
This work compares single molecule conductance measurements of selected organic systems containing i...
Controlling charge transport through molecules is challenging because it requires engineering of the...
The solid-state structures of organic charge transfer (CT) salts are critical in determining their m...
We measure the conductance of single Au-molecule-Au junctions with a series of air-stable diphenylph...
We measure the low bias conductance of a series of substituted benzene diamine molecules while break...
Abstract: The realization of molecular-scale electronic devices will require the development of nove...
We have measured the conductance of single-molecule junctions created with three different molecular...
The molecule–metal coupling in molecular junctions is investigated at the single-molecule level by a...
The creation of molecular components for use as electronic devices has made enormous progress. In or...
Host−guest interactions are of central importance in many biological and chemical processes. However...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
ConspectusThis Account provides an overview of our recent efforts to unravel charge transport charac...
Understanding the transport characteristics of single molecules bonded between metal electrodes is o...
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
We explore both experimentally and theoretically the conductance and packing of molecular junctions ...
This work compares single molecule conductance measurements of selected organic systems containing i...
Controlling charge transport through molecules is challenging because it requires engineering of the...
The solid-state structures of organic charge transfer (CT) salts are critical in determining their m...
We measure the conductance of single Au-molecule-Au junctions with a series of air-stable diphenylph...
We measure the low bias conductance of a series of substituted benzene diamine molecules while break...
Abstract: The realization of molecular-scale electronic devices will require the development of nove...
We have measured the conductance of single-molecule junctions created with three different molecular...
The molecule–metal coupling in molecular junctions is investigated at the single-molecule level by a...