AbstractHigh-bandwidth measurements of the ion current through hafnium oxide and silicon nitride nanopores allow the analysis of sub-30 kD protein molecules with unprecedented time resolution and detection efficiency. Measured capture rates suggest that at moderate transmembrane bias values, a substantial fraction of protein translocation events are detected. Our dwell-time resolution of 2.5 μs enables translocation time distributions to be fit to a first-passage time distribution derived from a 1D diffusion-drift model. The fits yield drift velocities that scale linearly with voltage, consistent with an electrophoretic process. Further, protein diffusion constants (D) are lower than the bulk diffusion constants (D0) by a factor of ∼50, and...
Despite the potential for nanopores to be a platform for high-bandwidth study of single-molecule sys...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
We report experimentally the transport of an unfolded protein through a narrow solid-state nanopore ...
Solid-state nanopore sensors have attracted considerable attraction as a tool for solution-based sin...
Identifying the protein content in a cell in a fast and reliable manner has become a relevant goal i...
Nanopores are powerful sensors capable of directly measuring the physical characteristics of single ...
This paper demonstrates that high-bandwidth current recordings in combination with low-noise silicon...
Biological nanopores are emerging as powerful and low-cost sensors for real-time analysis of biologi...
This chapter is focused on the development of experiments and theory of using solid-state nanopores ...
Nanopore based sensing technology has been widely studied for a broad range of applications includin...
Measurements on protein translocation through solid-state nanopores reveal anomalous (non-Smoluchows...
Nanopore sensing is a single-molecule technique capable of detecting peptide and protein molecules b...
Proteins are structurally dynamic macromolecules, and it is challenging to quantify the conformation...
Proteins are the active workhorses in our body. These biomolecules perform all vital cellular functi...
Proteins are the active workhorses in our body. These biomolecules perform all vital cellular functi...
Despite the potential for nanopores to be a platform for high-bandwidth study of single-molecule sys...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
We report experimentally the transport of an unfolded protein through a narrow solid-state nanopore ...
Solid-state nanopore sensors have attracted considerable attraction as a tool for solution-based sin...
Identifying the protein content in a cell in a fast and reliable manner has become a relevant goal i...
Nanopores are powerful sensors capable of directly measuring the physical characteristics of single ...
This paper demonstrates that high-bandwidth current recordings in combination with low-noise silicon...
Biological nanopores are emerging as powerful and low-cost sensors for real-time analysis of biologi...
This chapter is focused on the development of experiments and theory of using solid-state nanopores ...
Nanopore based sensing technology has been widely studied for a broad range of applications includin...
Measurements on protein translocation through solid-state nanopores reveal anomalous (non-Smoluchows...
Nanopore sensing is a single-molecule technique capable of detecting peptide and protein molecules b...
Proteins are structurally dynamic macromolecules, and it is challenging to quantify the conformation...
Proteins are the active workhorses in our body. These biomolecules perform all vital cellular functi...
Proteins are the active workhorses in our body. These biomolecules perform all vital cellular functi...
Despite the potential for nanopores to be a platform for high-bandwidth study of single-molecule sys...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
We report experimentally the transport of an unfolded protein through a narrow solid-state nanopore ...