Single-molecule carbon nanotube-based field-effect transistors are promising all-electronic devices for probing interactions of various biological and chemical molecules at the single- molecule level. Such devices consist of point-functionalized carbon nanotubes which are charge sensitive in the vicinity of a generated defect on the nanotube sidewall. Of particular interest is the characterization of the kinetic rates and thermodynamics of DNA duplex formation through repeated association (hybridization) and dissociation (melting) events on timescales unmatched by conventional single-molecule methods. In this work, we study the kinetics and thermodynamics of DNA duplex formation with two types of single-walled nanotubes: CVD-grown and solut...
Hybrid nanostructures consisting of single-walled carbon nanotubes (swCNs) coated with single strand...
DNA nanotubes provide a programmable architecture for molecular self-assembly and can serve as model...
DNA nanotubes provide a programmable architecture for molecular self-assembly and can serve as model...
This thesis describes a detection system for single molecules based on individual single-walled carb...
This thesis discusses the use of carbon nanotube field effect transistors as sensors for DNA. It pro...
Spurred by the Human Genome Project, deoxyribonucleic acid (DNA) microarrays are indispensable tools...
Nanoscale materials provide new opportunities to interface solid-state electronics with biomolecules...
Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the fa...
: Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the ...
Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the fa...
Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the fa...
Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the fa...
The first half of this dissertation is focused on the synthesis of high quality single-walled carbon...
Single-molecule enzymology has proven to be a powerful technique for understanding the driving force...
Single-molecule enzymology has proven to be a powerful technique for understanding the driving force...
Hybrid nanostructures consisting of single-walled carbon nanotubes (swCNs) coated with single strand...
DNA nanotubes provide a programmable architecture for molecular self-assembly and can serve as model...
DNA nanotubes provide a programmable architecture for molecular self-assembly and can serve as model...
This thesis describes a detection system for single molecules based on individual single-walled carb...
This thesis discusses the use of carbon nanotube field effect transistors as sensors for DNA. It pro...
Spurred by the Human Genome Project, deoxyribonucleic acid (DNA) microarrays are indispensable tools...
Nanoscale materials provide new opportunities to interface solid-state electronics with biomolecules...
Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the fa...
: Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the ...
Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the fa...
Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the fa...
Carbon nanotube (CNT)-based electrodes are cheap, highly performing, and robust platforms for the fa...
The first half of this dissertation is focused on the synthesis of high quality single-walled carbon...
Single-molecule enzymology has proven to be a powerful technique for understanding the driving force...
Single-molecule enzymology has proven to be a powerful technique for understanding the driving force...
Hybrid nanostructures consisting of single-walled carbon nanotubes (swCNs) coated with single strand...
DNA nanotubes provide a programmable architecture for molecular self-assembly and can serve as model...
DNA nanotubes provide a programmable architecture for molecular self-assembly and can serve as model...