Focusing on the potential applications of tailored graphene nanoribbons (t-GNRs), in this work, we systematically study size effects on the electronic transport in t-GNR-based molecular junctions. As a result of the manufacturing error generated during the processing or synthesis of t-GNRs using techniques such as ion beam lithography, the final dimensions of the as-fabricated devices often deviate from the design values, giving rise to a size distribution around the mean value which could considerably affect the device performance. To simulate the effects of the manufacturing error, a series of t-GNR-based junctions with various dimensions have been modelled and systematically investigated using density functional theory (DFT) coupled with...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
The conductance of several well-defined and experimentally accessible graphene nanoribbons (GNRs) li...
Focusing on the potential applications of tailored graphene nanoribbons (t-GNRs), in this work, we s...
In recent years, there has been much interest in modelling graphene nanoribbons as they have great p...
The electronic transport property for a crossed junction of graphene nanoribbons with and without im...
Abstract Planar carbon-based electronic devices, including metal/semiconductor junctions, transistor...
The quantum transport properties of graphene nanoribbon networks are investigated using first-princi...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
Planar carbon-based electronic devices, including metal/semiconductor junctions, transistors and int...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
Planar carbon-based electronic devices, including metal/semiconductor junctions, transistors and int...
Planar carbon-based electronic devices, including metal/semiconductor junctions, transistors and int...
Abstract. In this work, we study quantum transport properties of superlattice-graphene nanoribbons (...
Using first-principles quantum transport simulations, this work examines changes in the total elect...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
The conductance of several well-defined and experimentally accessible graphene nanoribbons (GNRs) li...
Focusing on the potential applications of tailored graphene nanoribbons (t-GNRs), in this work, we s...
In recent years, there has been much interest in modelling graphene nanoribbons as they have great p...
The electronic transport property for a crossed junction of graphene nanoribbons with and without im...
Abstract Planar carbon-based electronic devices, including metal/semiconductor junctions, transistor...
The quantum transport properties of graphene nanoribbon networks are investigated using first-princi...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
Planar carbon-based electronic devices, including metal/semiconductor junctions, transistors and int...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
Planar carbon-based electronic devices, including metal/semiconductor junctions, transistors and int...
Planar carbon-based electronic devices, including metal/semiconductor junctions, transistors and int...
Abstract. In this work, we study quantum transport properties of superlattice-graphene nanoribbons (...
Using first-principles quantum transport simulations, this work examines changes in the total elect...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
The conductance of several well-defined and experimentally accessible graphene nanoribbons (GNRs) li...