As biosensing devices shrink smaller and smaller, they approach a scale in which single molecule electronic sensing becomes possible. Here, we review the operation of single-enzyme transistors made using single-walled carbon nanotubes. These novel hybrid devices transduce the motions and catalytic activity of a single protein into an electronic signal for real-time monitoring of the protein’s activity. Analysis of these electronic signals reveals new insights into enzyme function and proves the electronic technique to be complementary to other single-molecule methods based on fluorescence. As one example of the nanocircuit technique, we have studied the Klenow Fragment (KF) of DNA polymerase I as it catalytically processes single-stranded D...
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...
For nearly 50 years, the vision of using single molecules in circuits has been seen as providing the...
As biosensing devices shrink smaller and smaller, they approach a scale in which single molecule ele...
As biosensing devices shrink smaller and smaller, they approach a scale in which single molecule ele...
As biosensing devices shrink smaller and smaller, they approach a scale in which single molecule ele...
As biosensing devices shrink smaller and smaller, they approach a scale in which single molecule ele...
DNA polymerases are central biocatalysts in the life cycle of all organisms. Structural transitions...
DNA polymerases are central biocatalysts in the life cycle of all organisms. Structural transitions...
Nanoscale materials provide new opportunities to interface solid-state electronics with biomolecules...
The first half of this dissertation is focused on the synthesis of high quality single-walled carbon...
Bioconjugating single molecules of the Klenow fragment of DNA polymerase I into electronic nanocircu...
Studies of single biomolecules provide information that is buried in an ensemble-based measurement, ...
Bioconjugating single molecules of the Klenow fragment of DNA polymerase I into electronic nanocircu...
Bioconjugating single molecules of the Klenow fragment of DNA polymerase I into electronic nanocircu...
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...
For nearly 50 years, the vision of using single molecules in circuits has been seen as providing the...
As biosensing devices shrink smaller and smaller, they approach a scale in which single molecule ele...
As biosensing devices shrink smaller and smaller, they approach a scale in which single molecule ele...
As biosensing devices shrink smaller and smaller, they approach a scale in which single molecule ele...
As biosensing devices shrink smaller and smaller, they approach a scale in which single molecule ele...
DNA polymerases are central biocatalysts in the life cycle of all organisms. Structural transitions...
DNA polymerases are central biocatalysts in the life cycle of all organisms. Structural transitions...
Nanoscale materials provide new opportunities to interface solid-state electronics with biomolecules...
The first half of this dissertation is focused on the synthesis of high quality single-walled carbon...
Bioconjugating single molecules of the Klenow fragment of DNA polymerase I into electronic nanocircu...
Studies of single biomolecules provide information that is buried in an ensemble-based measurement, ...
Bioconjugating single molecules of the Klenow fragment of DNA polymerase I into electronic nanocircu...
Bioconjugating single molecules of the Klenow fragment of DNA polymerase I into electronic nanocircu...
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...
For nearly 50 years, the vision of using single molecules in circuits has been seen as providing the...