This thesis describes the fabrication and use of nanostructures to study the physical properties of individual DNA molecules. We report DNA translocation experiments through solid-state nanopores with a diameter of about 10 nm. DNA ranging in length from 2000 to 48000 base pairs was detected and we find that the translocation time scales as a power law with length. Moreover, we show that such nanopores are an excellent tool for DNA size discrimination. To make suitable pores, we have developed a new fabrication technique. We show that a transmission electron microscope can be used to shrink pores in silicon oxide, with direct visual feedback. We conclude that the silicon oxide is softened by the electron beam, and deforms driven by its surf...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
The application of single-crystal silicon (SCS) nanopore structures in single-molecule-based analyti...
Single molecule studies depend upon precise control over the chemical and physical structure of the ...
This thesis describes the fabrication and use of nanostructures to study the physical properties of ...
The ability to manipulate and identify the properties of single biological molecules with the potent...
The direct characterization, detection, and identification of single nucleic acid molecules can revo...
Single molecule sensors in which nanoscale pores within biological or artificial membranes act as me...
The pursuit of inexpensive DNA sequencing lies at the interface between nanotechnology and biotechno...
Nanofabrication techniques are combined to produce a nanopore (less than 10nm in diameter) in a thin...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
Novel advances in fluidic MEMS sensor/sensor electronics design utilizing silicon nanopores have ope...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
178 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.Lastly, we describe using a n...
For biomolecule sensing purposes a solid-state nanopore platform based on silicon has certain advant...
A mong the variety of roles for nanopores in biology, an important one is enabling polymer transport...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
The application of single-crystal silicon (SCS) nanopore structures in single-molecule-based analyti...
Single molecule studies depend upon precise control over the chemical and physical structure of the ...
This thesis describes the fabrication and use of nanostructures to study the physical properties of ...
The ability to manipulate and identify the properties of single biological molecules with the potent...
The direct characterization, detection, and identification of single nucleic acid molecules can revo...
Single molecule sensors in which nanoscale pores within biological or artificial membranes act as me...
The pursuit of inexpensive DNA sequencing lies at the interface between nanotechnology and biotechno...
Nanofabrication techniques are combined to produce a nanopore (less than 10nm in diameter) in a thin...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
Novel advances in fluidic MEMS sensor/sensor electronics design utilizing silicon nanopores have ope...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
178 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.Lastly, we describe using a n...
For biomolecule sensing purposes a solid-state nanopore platform based on silicon has certain advant...
A mong the variety of roles for nanopores in biology, an important one is enabling polymer transport...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
The application of single-crystal silicon (SCS) nanopore structures in single-molecule-based analyti...
Single molecule studies depend upon precise control over the chemical and physical structure of the ...