Molecular components with their inherent scalability are expected to be promising supplements for nanoscale electronic devices. Here we report on how to specifically tune the electronic structure of chemisorbed molecules and thus to gain control of molecular transport properties. The electronic structure of our prototype π-conjugated carboxylic acid anchored on the Cu(110) surface is modified systematically by inserting nitrogen atoms in a six-membered aromatic ring, a carboxylic functional group at the aromatic ring or both. Depending on the specific nature of the substituent, the relative position of the occupied or unoccupied electronic states with respect to the Fermi level can be specifically controlled and thus the transport propertie...
This dissertation presents a generalized quantum chemical approach for electron transport in molecul...
The atomic structure and electronic transport properties of Cu-metalated carbyne are investigated by...
Modern electronics technology has reached a very sophisticated stage. Require-ments for smaller and ...
Molecular electronics is recognized as a key candidate to succeed the silicon based technology as so...
The molecule-metal interface formed by pyridine-2,5-dicarboxylic acid chemically bonded to the Cu (1...
In this first-principles study, we present density-functional calculations of the electronic structu...
We have fabricated atom-molecule contacts by attachment of single Cu atoms to terpyridine side group...
The electronic transport properties of electrons in a molecules are observed by using Non equilibriu...
line d b ain e s ge rDuring the past ten years, the progress in manipulation tech-niques has motivat...
For the realization of molecular electronics, one essential goal is the ability to systematically fa...
In an effort to make advances in electronics through ever smaller devices, the field of molecular el...
A generalized quantum chemical approach for electron transport in molecular devices is developed. It...
As silicon-based microelectronics approaches its fundamental physical limit, molecular electronics i...
One of the central problems of molecular electronics is to understand electron conduction properties...
A longstanding aim in molecular-scale electronics is to create a true transistor analogue in which c...
This dissertation presents a generalized quantum chemical approach for electron transport in molecul...
The atomic structure and electronic transport properties of Cu-metalated carbyne are investigated by...
Modern electronics technology has reached a very sophisticated stage. Require-ments for smaller and ...
Molecular electronics is recognized as a key candidate to succeed the silicon based technology as so...
The molecule-metal interface formed by pyridine-2,5-dicarboxylic acid chemically bonded to the Cu (1...
In this first-principles study, we present density-functional calculations of the electronic structu...
We have fabricated atom-molecule contacts by attachment of single Cu atoms to terpyridine side group...
The electronic transport properties of electrons in a molecules are observed by using Non equilibriu...
line d b ain e s ge rDuring the past ten years, the progress in manipulation tech-niques has motivat...
For the realization of molecular electronics, one essential goal is the ability to systematically fa...
In an effort to make advances in electronics through ever smaller devices, the field of molecular el...
A generalized quantum chemical approach for electron transport in molecular devices is developed. It...
As silicon-based microelectronics approaches its fundamental physical limit, molecular electronics i...
One of the central problems of molecular electronics is to understand electron conduction properties...
A longstanding aim in molecular-scale electronics is to create a true transistor analogue in which c...
This dissertation presents a generalized quantum chemical approach for electron transport in molecul...
The atomic structure and electronic transport properties of Cu-metalated carbyne are investigated by...
Modern electronics technology has reached a very sophisticated stage. Require-ments for smaller and ...