A novel method using resistive pulse sensors for electrokinetic surface charge measurements of nanoparticles is presented. This method involves recording the particle blockade rate while the pressure applied across a pore sensor is varied. This applied pressure acts in a direction which opposes transport due to the combination of electro-osmosis, electrophoresis, and inherent pressure. The blockade rate reaches a minimum when the velocity of nanoparticles in the vicinity of the pore approaches zero, and the forces on typical nanoparticles are in equilibrium. The pressure applied at this minimum rate can be used to calculate the zeta potential of the nanoparticles. The efficacy of this variable pressure method was demonstrated for a range of...
We observe single nanoparticle translocation events <i>via</i> resistive pulse sensing using silicon...
The detection and characterisation of micro- and nanoscale particles has become increasingly importa...
Here we use a polyurethane tunable nanopore integrated into a resistive pulse sensing technique to c...
A novel method using resistive pulse sensors for electrokinetic surface charge measurements of nanop...
Accurate characterisation of micro- and nanoparticles is of key importance in a variety of scientifi...
Modern resistive pulse sensing techniques can be used to measure nanoparticle electrophoretic mobili...
In this study, the collision of monodispersed single Au@SiO2 nanoparticles (NPs; ∼83.5 ± 6.5 nm) at ...
The prospect of characterizing individual nanoparticles, molecules, or DNA base pairs has generated ...
Tunable resistive pulse sensing (TRPS) is a particle-by-particle analysis technique combining the Co...
Nanometer-scale pores are capable of detecting the size and concentration of nanometer-sized analyte...
The surface charge of nanoparticles plays an important role in the way they interact with biological...
The prospect of characterizing individual nanoparticles, molecules, or DNA base pairs has generated ...
Nanopore science, the study of individual nanoscale pores within thin membranes, is a fast-growing f...
Tunable nanopores fabricated in elastomeric membranes have been used to study the dependence of ioni...
Recent advances in nanopore-based technologies and microelectronics allowed the resurgence of Coult...
We observe single nanoparticle translocation events <i>via</i> resistive pulse sensing using silicon...
The detection and characterisation of micro- and nanoscale particles has become increasingly importa...
Here we use a polyurethane tunable nanopore integrated into a resistive pulse sensing technique to c...
A novel method using resistive pulse sensors for electrokinetic surface charge measurements of nanop...
Accurate characterisation of micro- and nanoparticles is of key importance in a variety of scientifi...
Modern resistive pulse sensing techniques can be used to measure nanoparticle electrophoretic mobili...
In this study, the collision of monodispersed single Au@SiO2 nanoparticles (NPs; ∼83.5 ± 6.5 nm) at ...
The prospect of characterizing individual nanoparticles, molecules, or DNA base pairs has generated ...
Tunable resistive pulse sensing (TRPS) is a particle-by-particle analysis technique combining the Co...
Nanometer-scale pores are capable of detecting the size and concentration of nanometer-sized analyte...
The surface charge of nanoparticles plays an important role in the way they interact with biological...
The prospect of characterizing individual nanoparticles, molecules, or DNA base pairs has generated ...
Nanopore science, the study of individual nanoscale pores within thin membranes, is a fast-growing f...
Tunable nanopores fabricated in elastomeric membranes have been used to study the dependence of ioni...
Recent advances in nanopore-based technologies and microelectronics allowed the resurgence of Coult...
We observe single nanoparticle translocation events <i>via</i> resistive pulse sensing using silicon...
The detection and characterisation of micro- and nanoscale particles has become increasingly importa...
Here we use a polyurethane tunable nanopore integrated into a resistive pulse sensing technique to c...