Exploring the charge transport process in molecular junctions is essential to the development of molecular electronics. Here, we investigate the temperature-dependent charge transport mechanism of carbon electrode-diarylethene single-molecule junctions, which possess photocontrollable molecular orbital energy levels due to reversible photoisomerization of individual diarylethenes between open and closed conformations. Both the experimental results and theoretical calculations consistently demonstrate that the vibronic coupling (thermally activated at the proper temperature) drives the transition of charge transport in the junctions from coherent tunneling to incoherent transport. Due to the subtle electron–phonon coupling effect, incoherent...
Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the pred...
The simplest component of molecular electronics consists of a single-molecule transport junction: a ...
Resonant tunneling is an efficient mechanism for charge transport through nanoscale conductance junc...
Exploring the charge transport process in molecular junctions is essential to the development of mol...
We report on the experimental analysis of the charge transport through single-molecule junctions of ...
A molecular switch: The conductance of a new molecular device based on graphene-molecule junctions w...
A major goal of molecular electronics is the development and implementation of devices such as singl...
A great challenge to present-day applied science is to develop electronic devices at the nanometer s...
We report on an experimental analysis of the charge transport through sulfur-free photochromic molec...
We review the fascinating research on charge transport through switchable molecules. In the past dec...
The conductance properties of a photoswitchable dimethyldihydropyrene (DHP) derivative have been inv...
Reversible conductance photoswitching behaviors of single diarylethene molecule have garnered increa...
The detailed understanding of electronic transport through a single molecule or an ensemble of self-...
ConspectusThe field of molecular electronics has grown rapidly since its experimental realization in...
Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the pred...
Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the pred...
The simplest component of molecular electronics consists of a single-molecule transport junction: a ...
Resonant tunneling is an efficient mechanism for charge transport through nanoscale conductance junc...
Exploring the charge transport process in molecular junctions is essential to the development of mol...
We report on the experimental analysis of the charge transport through single-molecule junctions of ...
A molecular switch: The conductance of a new molecular device based on graphene-molecule junctions w...
A major goal of molecular electronics is the development and implementation of devices such as singl...
A great challenge to present-day applied science is to develop electronic devices at the nanometer s...
We report on an experimental analysis of the charge transport through sulfur-free photochromic molec...
We review the fascinating research on charge transport through switchable molecules. In the past dec...
The conductance properties of a photoswitchable dimethyldihydropyrene (DHP) derivative have been inv...
Reversible conductance photoswitching behaviors of single diarylethene molecule have garnered increa...
The detailed understanding of electronic transport through a single molecule or an ensemble of self-...
ConspectusThe field of molecular electronics has grown rapidly since its experimental realization in...
Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the pred...
Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the pred...
The simplest component of molecular electronics consists of a single-molecule transport junction: a ...
Resonant tunneling is an efficient mechanism for charge transport through nanoscale conductance junc...