We report here an advanced approach for simultaneous and independent submicroscale imaging of local surface charge and topography using microchanneled cantilevers, also known as FluidFM nanopipette probes. These hollow cantilevers with a 300 nm opening are employed for ion current measurements that provide access to the local properties of the electrical double layer using the phenomenon of ion current rectification, while also taking advantage of the force sensing capabilities for accurate probe vertical positioning and topography imaging. The independent nature of this atomic force microscope (AFM) feedback opens up a possibility to significantly increase the sensitivity for probing local surface charges in a wider range of salt concentra...
Nanopipets are versatile tools for nanoscience, particularly when used in scanning ion conductance m...
A significant limitation of electrokinetic measurements is that only an average value of the zeta po...
Multimodal nano-imaging in electrochemical environments is important across many areas of science an...
We report here an advanced approach for simultaneous and independent submicroscale imaging of local ...
Biological membranes contain ion channels, which are nanoscale pores allowing controlled ionic trans...
Nanopipettes are emerging as simple but powerful tools for probing chemistry at the nanoscale. In th...
Nanopipettes are playing an increasingly prominent role in nanoscience, for sizing, sequencing, deli...
We combined scanning ion conductance microscopy (SICM) and atomic force microscopy (AFM) into a sing...
We have constructed a combined TappingMode atomic force microscope and scanning ion conductance micr...
Nanopipettes are playing an increasingly prominent role in nanoscience, for sizing, sequencing, deli...
A vast range of interfacial systems exhibit charge heterogeneities on the nanoscale. These differenc...
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
Mapping charged chemical groups at the solid–liquid interface is important in many areas, ranging fr...
Nanofluidics is an emerging field with many science and engineering applications. The physics of mat...
The effective surface potential, called the ζ potential, is commonly determined from electrophoretic...
Nanopipets are versatile tools for nanoscience, particularly when used in scanning ion conductance m...
A significant limitation of electrokinetic measurements is that only an average value of the zeta po...
Multimodal nano-imaging in electrochemical environments is important across many areas of science an...
We report here an advanced approach for simultaneous and independent submicroscale imaging of local ...
Biological membranes contain ion channels, which are nanoscale pores allowing controlled ionic trans...
Nanopipettes are emerging as simple but powerful tools for probing chemistry at the nanoscale. In th...
Nanopipettes are playing an increasingly prominent role in nanoscience, for sizing, sequencing, deli...
We combined scanning ion conductance microscopy (SICM) and atomic force microscopy (AFM) into a sing...
We have constructed a combined TappingMode atomic force microscope and scanning ion conductance micr...
Nanopipettes are playing an increasingly prominent role in nanoscience, for sizing, sequencing, deli...
A vast range of interfacial systems exhibit charge heterogeneities on the nanoscale. These differenc...
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
Mapping charged chemical groups at the solid–liquid interface is important in many areas, ranging fr...
Nanofluidics is an emerging field with many science and engineering applications. The physics of mat...
The effective surface potential, called the ζ potential, is commonly determined from electrophoretic...
Nanopipets are versatile tools for nanoscience, particularly when used in scanning ion conductance m...
A significant limitation of electrokinetic measurements is that only an average value of the zeta po...
Multimodal nano-imaging in electrochemical environments is important across many areas of science an...