Understanding the behavioral properties of single molecules or larger scale populations interacting with single molecules is currently a hotly pursued topic in nanotechnology. This arises from the potential such techniques have in relation to applications such as targeted drug delivery, early stage detection of disease, and drug screening. Although label and label-free single molecule detection strategies have existed for a number of years, currently lacking are efficient methods for the controllable delivery of single molecules in aqueous environments. In this article we show both experimentally and from simulations that nanopipets in conjunction with asymmetric voltage pulses can be used for label-free detection and delivery of single mol...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
With the view of enhancing the functionality of label-free single molecule nanopore-based detection,...
Understanding the behavioral properties of single molecules or larger scale populations interacting ...
Understanding the behavioral properties of single molecules or larger scale populations interacting ...
Understanding the behavioral properties of single molecules or larger scale populations interacting ...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
Inspired by transmembrane pores found in cell membranes and the operating principle of the Coulter c...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
With the view of enhancing the functionality of label-free single molecule nanopore-based detection,...
Understanding the behavioral properties of single molecules or larger scale populations interacting ...
Understanding the behavioral properties of single molecules or larger scale populations interacting ...
Understanding the behavioral properties of single molecules or larger scale populations interacting ...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
By combining DNA nanotechnology and high-bandwidth single-molecule detection in nanopipets, we demon...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
Inspired by transmembrane pores found in cell membranes and the operating principle of the Coulter c...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
Glass or quartz nanopipettes have found increasing use as tools for studying the biophysical propert...
With the view of enhancing the functionality of label-free single molecule nanopore-based detection,...