Nanopipettes are playing an increasingly prominent role in nanoscience, for sizing, sequencing, delivery, detection, and mapping interfacial properties. Herein, the question of how to best resolve topography and surface charge effects when using a nanopipette as a probe for mapping in scanning ion conductance microscopy (SICM) is addressed. It is shown that, when a bias modulated (BM) SICM scheme is used, it is possible to map the topography faithfully, while also allowing surface charge to be estimated. This is achieved by applying zero net bias between the electrode in the SICM tip and the one in bulk solution for topographical mapping, with just a small harmonic perturbation of the potential to create an AC current for tip positioning. T...
The characterization of electrocatalytic reactions at individual nanoparticles (NPs) is presently of...
The surface charge and topography of human hair are visualized synchronously at the nanoscale using ...
We report here an advanced approach for simultaneous and independent submicroscale imaging of local ...
Nanopipettes are playing an increasingly prominent role in nanoscience, for sizing, sequencing, deli...
Nanopipettes are emerging as simple but powerful tools for probing chemistry at the nanoscale. In th...
A vast range of interfacial systems exhibit charge heterogeneities on the nanoscale. These differenc...
Scanning ion conductance microscopy (SICM) is a powerful technique for imaging the topography of a w...
Scanning ion conductance microscopy (SICM) is a nanopipette-based technique that has traditionally b...
Scanning ion conductance microscopy (SICM) is a nanopipette-based scanning probe microscopy techniqu...
Nanopipets are versatile tools for nanoscience, particularly when used in scanning ion conductance m...
Scanning ion conductance microscopy (SICM) is a powerful technique for imaging the topography of a w...
Nanopipets are versatile tools for nanoscience, particularly when used in scanning ion conductance m...
Nanopipettes are widely used in electrochemical and analytical techniques as tools for sizing, seque...
We report here an advanced approach for simultaneous and independent submicroscale imaging of local ...
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
The characterization of electrocatalytic reactions at individual nanoparticles (NPs) is presently of...
The surface charge and topography of human hair are visualized synchronously at the nanoscale using ...
We report here an advanced approach for simultaneous and independent submicroscale imaging of local ...
Nanopipettes are playing an increasingly prominent role in nanoscience, for sizing, sequencing, deli...
Nanopipettes are emerging as simple but powerful tools for probing chemistry at the nanoscale. In th...
A vast range of interfacial systems exhibit charge heterogeneities on the nanoscale. These differenc...
Scanning ion conductance microscopy (SICM) is a powerful technique for imaging the topography of a w...
Scanning ion conductance microscopy (SICM) is a nanopipette-based technique that has traditionally b...
Scanning ion conductance microscopy (SICM) is a nanopipette-based scanning probe microscopy techniqu...
Nanopipets are versatile tools for nanoscience, particularly when used in scanning ion conductance m...
Scanning ion conductance microscopy (SICM) is a powerful technique for imaging the topography of a w...
Nanopipets are versatile tools for nanoscience, particularly when used in scanning ion conductance m...
Nanopipettes are widely used in electrochemical and analytical techniques as tools for sizing, seque...
We report here an advanced approach for simultaneous and independent submicroscale imaging of local ...
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
The characterization of electrocatalytic reactions at individual nanoparticles (NPs) is presently of...
The surface charge and topography of human hair are visualized synchronously at the nanoscale using ...
We report here an advanced approach for simultaneous and independent submicroscale imaging of local ...