In this study, the collision of monodispersed single Au@SiO2 nanoparticles (NPs; ∼83.5 ± 6.5 nm) at the outer orifice of a smaller-sized (∼40 ± 8 nm) conical glass nanopore was systematically investigated by the resistive-pulse sensing technique under three different surface charge states. When NPs approach the nanopipette orifice and collide, the ionic current changes dramatically, and the collision current amplitude shows a linear relationship with the potential bias applied. In our system, the electroosmotic flow is found to be the main driving force for the collision, and the resistive-pulse collision signal depends on the relative electroosmotic, electrophoretic, and electrostatic forces being applied, which in turn can reflect the sur...
Nanopore science, the study of individual nanoscale pores within thin membranes, is a fast-growing f...
We investigated the electrochemical detection of single iridium oxide nanoparticle (IrO<sub><i>x</i>...
In this work, we study transport-induced-charge electroosmosis toward alternating current resistive ...
A novel method using resistive pulse sensors for electrokinetic surface charge measurements of nanop...
A novel method using resistive pulse sensors for electrokinetic surface charge measurements of nanop...
This paper describes a fundamental study of the effect of electrostatic interactions on the resistiv...
We observe single nanoparticle translocation events <i>via</i> resistive pulse sensing using silicon...
Accurate characterisation of micro- and nanoparticles is of key importance in a variety of scientifi...
Signal delay is a crucial factor in resistive pulse analyses using low-thickness-to-diameter aspect-...
Recent advances in nanopore-based technologies and microelectronics allowed the resurgence of Coult...
Current rectification is well known in ion transport through nanoscale pores and channel devices. Th...
This thesis describes research conducted on the physics and applications of micro- andnanoscale ion-...
The ability to precisely count inorganic and organic nanoparticles and to measure their size distrib...
Electrostatic interactions of mobile charges in solution with the fixed surface charges are known to...
Solid state nanopores are widely used in detection of highly charged biomolecules like DNA and prote...
Nanopore science, the study of individual nanoscale pores within thin membranes, is a fast-growing f...
We investigated the electrochemical detection of single iridium oxide nanoparticle (IrO<sub><i>x</i>...
In this work, we study transport-induced-charge electroosmosis toward alternating current resistive ...
A novel method using resistive pulse sensors for electrokinetic surface charge measurements of nanop...
A novel method using resistive pulse sensors for electrokinetic surface charge measurements of nanop...
This paper describes a fundamental study of the effect of electrostatic interactions on the resistiv...
We observe single nanoparticle translocation events <i>via</i> resistive pulse sensing using silicon...
Accurate characterisation of micro- and nanoparticles is of key importance in a variety of scientifi...
Signal delay is a crucial factor in resistive pulse analyses using low-thickness-to-diameter aspect-...
Recent advances in nanopore-based technologies and microelectronics allowed the resurgence of Coult...
Current rectification is well known in ion transport through nanoscale pores and channel devices. Th...
This thesis describes research conducted on the physics and applications of micro- andnanoscale ion-...
The ability to precisely count inorganic and organic nanoparticles and to measure their size distrib...
Electrostatic interactions of mobile charges in solution with the fixed surface charges are known to...
Solid state nanopores are widely used in detection of highly charged biomolecules like DNA and prote...
Nanopore science, the study of individual nanoscale pores within thin membranes, is a fast-growing f...
We investigated the electrochemical detection of single iridium oxide nanoparticle (IrO<sub><i>x</i>...
In this work, we study transport-induced-charge electroosmosis toward alternating current resistive ...