Single molecule electronics is a field of research focused on the use of single molecules as electronics components. During the past 15 years the field has concentrated on development of test beds for measurements on single molecules. Bottom–up approaches to single molecule devices are emerging as alternatives to the dominant top–down nanofabrication techniques. One example is solution-based self-assembly of a molecule enclosed by two gold nanorod electrodes. This article will discuss recent attempts to control the self-assembly process by the use of supramolecular chemistry and how to tailor the electronic properties of a single molecule by chemical design
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
The mechanically controllable break-junction technique (MCBJ) enables us to investigate charge trans...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
In this review the emerging science of single molecules is discussed from the perspective of nanosca...
The demand for more powerful computers have been increasing ever since the first semiconducting devi...
The field of molecular electronics is generally divided into one of two major categories, the first ...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
The self-assembly of large organic adsorbates on solid surfaces is driven by subtle energy balances ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
The mechanically controllable break-junction technique (MCBJ) enables us to investigate charge trans...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
In this review the emerging science of single molecules is discussed from the perspective of nanosca...
The demand for more powerful computers have been increasing ever since the first semiconducting devi...
The field of molecular electronics is generally divided into one of two major categories, the first ...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
The self-assembly of large organic adsorbates on solid surfaces is driven by subtle energy balances ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Molecular electronics studies charge transport through molecules and the applications in electronic ...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...
The mechanically controllable break-junction technique (MCBJ) enables us to investigate charge trans...
Recent years have seen progress in several areas regarding single molecule electronic devices. A num...