Herein, we feature our recent efforts toward the development and application of nanoelectrochemistry at liquid/liquid interfaces, which are also known as interfaces between two immiscible electrolyte solutions (ITIES). Nanopipets, nanopores, and nanoemulsions are developed to create the nanoscale ITIES for the quantitative electrochemical measurement of ion transfer, electron transfer, and molecular transport across the interface. The nanoscale ITIES serves as an electrochemical nanosensor to enable the selective detection of various ions and molecules as well as high-resolution chemical imaging based on scanning electrochemical microscopy. The powerful nanoelectroanalytical methods will be useful for biological and material applications as...
The electrochemical behaviour of single and arrayed nanoscale interfaces between two immiscible elec...
The voltammetric behaviour of proteins at interfaces between two immiscible electrolyte solutions (I...
The benefit of miniaturization towards the nanoscale of electroanalytical systems was evaluated by a...
Herein, we feature our recent efforts toward the development and application of nanoelectrochemistry...
The liquid–liquid interface between two immiscible electrolyte solutions (ITIES) offers a unique pla...
Ion transfer at the interface between immiscible electrolyte solutions offers many benefits to analy...
Ion transfer at the interface between immiscible electrolyte solutions offers many benefits to analy...
In this tutorial review, we will briefly introduce the history and basic concepts of micro- and nano...
Arrays of nanoscale interfaces between immiscible electrolyte solutions were formed using siliconnit...
Ion transfer across interfaces between immiscible liquids provides a means for the nonredox electroc...
This thesis aimed to examine the behaviour of nanoscale and microscale liquid interfaces for chemic...
This review presents an introduction to electrochemistry at interfaces between immiscible electrolyt...
© 2016 CSIRO. This review presents an introduction to electrochemistry at interfaces between immisci...
Pore-based structures occur widely in living organisms. Ion channels embedded in cell membranes, for...
New electrochemical approaches have been applied to investigate nanoemulsions (NEs) for their nanost...
The electrochemical behaviour of single and arrayed nanoscale interfaces between two immiscible elec...
The voltammetric behaviour of proteins at interfaces between two immiscible electrolyte solutions (I...
The benefit of miniaturization towards the nanoscale of electroanalytical systems was evaluated by a...
Herein, we feature our recent efforts toward the development and application of nanoelectrochemistry...
The liquid–liquid interface between two immiscible electrolyte solutions (ITIES) offers a unique pla...
Ion transfer at the interface between immiscible electrolyte solutions offers many benefits to analy...
Ion transfer at the interface between immiscible electrolyte solutions offers many benefits to analy...
In this tutorial review, we will briefly introduce the history and basic concepts of micro- and nano...
Arrays of nanoscale interfaces between immiscible electrolyte solutions were formed using siliconnit...
Ion transfer across interfaces between immiscible liquids provides a means for the nonredox electroc...
This thesis aimed to examine the behaviour of nanoscale and microscale liquid interfaces for chemic...
This review presents an introduction to electrochemistry at interfaces between immiscible electrolyt...
© 2016 CSIRO. This review presents an introduction to electrochemistry at interfaces between immisci...
Pore-based structures occur widely in living organisms. Ion channels embedded in cell membranes, for...
New electrochemical approaches have been applied to investigate nanoemulsions (NEs) for their nanost...
The electrochemical behaviour of single and arrayed nanoscale interfaces between two immiscible elec...
The voltammetric behaviour of proteins at interfaces between two immiscible electrolyte solutions (I...
The benefit of miniaturization towards the nanoscale of electroanalytical systems was evaluated by a...