Nanopore science, the study of individual nanoscale pores within thin membranes, is a fast-growing field which presents numerous interesting problems for physicists and applied mathematicians. Nanopores are most commonly applied to resistive pulse sensing (RPS) of individual particles suspended in aqueous electrolyte. The form of a resistive pulse is dependent on an array of experimental variables, including electrolyte characteristics, electrophoretic and convective transport, and (especially) pore and particle geometry. The level of analysis required depends on the application, but any broadly useful approach should be simple and flexible, due to the requirement for high data throughput and variations between different experimental system...
Signal delay is a crucial factor in resistive pulse analyses using low-thickness-to-diameter aspect-...
Nanopore sensing via resistive pulse technique are utilized as a potent tool to characterize physica...
[[abstract]]Multiple parameters affecting the transmembrane current in resistive pulse sensing were ...
Nanopore science, the study of individual nanoscale pores within thin membranes, is a fast-growing f...
Tunable resistive pulse sensing (TRPS) is a particle-by-particle analysis technique combining the Co...
Accurate characterisation of micro- and nanoparticles is of key importance in a variety of scientifi...
The detection and characterisation of micro- and nanoscale particles has become increasingly importa...
We observe single nanoparticle translocation events <i>via</i> resistive pulse sensing using silicon...
The prospect of characterizing individual nanoparticles, molecules, or DNA base pairs has generated ...
This thesis describes research conducted on the physics and applications of micro- andnanoscale ion-...
The prospect of characterizing individual nanoparticles, molecules, or DNA base pairs has generated ...
Recent advances in nanopore-based technologies and microelectronics allowed the resurgence of Coult...
Single pores in the resistive-pulse technique are used as an analytics tool to detect, size, and cha...
This paper describes a fundamental study of the effect of electrostatic interactions on the resistiv...
The resistive pulse sensing (RPS) method based on the Coulter principle is a powerful method for par...
Signal delay is a crucial factor in resistive pulse analyses using low-thickness-to-diameter aspect-...
Nanopore sensing via resistive pulse technique are utilized as a potent tool to characterize physica...
[[abstract]]Multiple parameters affecting the transmembrane current in resistive pulse sensing were ...
Nanopore science, the study of individual nanoscale pores within thin membranes, is a fast-growing f...
Tunable resistive pulse sensing (TRPS) is a particle-by-particle analysis technique combining the Co...
Accurate characterisation of micro- and nanoparticles is of key importance in a variety of scientifi...
The detection and characterisation of micro- and nanoscale particles has become increasingly importa...
We observe single nanoparticle translocation events <i>via</i> resistive pulse sensing using silicon...
The prospect of characterizing individual nanoparticles, molecules, or DNA base pairs has generated ...
This thesis describes research conducted on the physics and applications of micro- andnanoscale ion-...
The prospect of characterizing individual nanoparticles, molecules, or DNA base pairs has generated ...
Recent advances in nanopore-based technologies and microelectronics allowed the resurgence of Coult...
Single pores in the resistive-pulse technique are used as an analytics tool to detect, size, and cha...
This paper describes a fundamental study of the effect of electrostatic interactions on the resistiv...
The resistive pulse sensing (RPS) method based on the Coulter principle is a powerful method for par...
Signal delay is a crucial factor in resistive pulse analyses using low-thickness-to-diameter aspect-...
Nanopore sensing via resistive pulse technique are utilized as a potent tool to characterize physica...
[[abstract]]Multiple parameters affecting the transmembrane current in resistive pulse sensing were ...