Metalloproteins recently emerged as good candidates for signal transduction in bionanodevices, but the feasibility of such novel devices is strongly connected to the achievement of an efficient charge transport between single metalloproteins and metal electrodes. In this work, we propose the use of metallic single-walled carbon nanotubes as efficient linkers between metalloproteins and metal surfaces. By means of a conductive atomic force microscopy investigation, we compare the conduction across single yeast cytochrome c molecules covalently bound both to bare gold and to functionalized metallic single-walled carbon nanotubes lying on gold. At comparable forces applied by the microscope tip (i.e., comparable physical contact), the measured...
We positioned semiconducting multiwalled carbon nanotube, using an atomic force microscope, between ...
This paper explores the possibility of using arrays of metallic carbon nanotubes as sensors. Unlike ...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Metalloproteins recently emerged as good candidates for signal transduction in bionanodevices, but t...
The integration of redox proteins with nanomaterials has attracted much interest in the past years, ...
The comprehension of conduction mechanisms in single-walled carbon nanotubes is a crucial task for d...
In this thesis Postma presents transport experiments performed on individual single-wall carbon nano...
We report novel transport properties of the individual single-walled carbon nanotube (SWNT) field ef...
Carbon nanotube (CNT) films have excellent conductivity and suitable flexibility for chemical sensin...
Graduation date: 2012This dissertation explores the engineering of carbon nanotube electronic device...
Carbon nanotubes have rightfully been regarded as a wonder material since their discovery by Iijima ...
Our first-principles study of the contact between a semiconducting single-walled carbon nanotube ~s...
We have explored the room temperature response of metal nanoparticle decorated single-walled carbon ...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Carbon nanotubes are tiny hollow cylinders, made from a single graphene sheet, that possess many ama...
We positioned semiconducting multiwalled carbon nanotube, using an atomic force microscope, between ...
This paper explores the possibility of using arrays of metallic carbon nanotubes as sensors. Unlike ...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Metalloproteins recently emerged as good candidates for signal transduction in bionanodevices, but t...
The integration of redox proteins with nanomaterials has attracted much interest in the past years, ...
The comprehension of conduction mechanisms in single-walled carbon nanotubes is a crucial task for d...
In this thesis Postma presents transport experiments performed on individual single-wall carbon nano...
We report novel transport properties of the individual single-walled carbon nanotube (SWNT) field ef...
Carbon nanotube (CNT) films have excellent conductivity and suitable flexibility for chemical sensin...
Graduation date: 2012This dissertation explores the engineering of carbon nanotube electronic device...
Carbon nanotubes have rightfully been regarded as a wonder material since their discovery by Iijima ...
Our first-principles study of the contact between a semiconducting single-walled carbon nanotube ~s...
We have explored the room temperature response of metal nanoparticle decorated single-walled carbon ...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Carbon nanotubes are tiny hollow cylinders, made from a single graphene sheet, that possess many ama...
We positioned semiconducting multiwalled carbon nanotube, using an atomic force microscope, between ...
This paper explores the possibility of using arrays of metallic carbon nanotubes as sensors. Unlike ...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...