Free-standing silica nanochannel membrane (SNM) with perforated channels was utilized to create arrays of nanoscale interfaces between two immiscible electrolyte solutions (nano-ITIES), at which permselective ion transfer and detection were achieved. The SNM consisted of a high density of straight nanochannels with a diameter of 2–3 nm and a length of 70 nm. The silicon wafer coated by 150 nm-thick porous silicon nitride film (p-SiNF) with pores of 5 μm-in-diameter was used to support the SNM in a form of nanochannel-on-micropore. Considering the material surface lipophilicity, the nano-ITIES array was formed at the boundary between SNM and p-SiNF, with a diffusion geometry equivalent to two back-to-back inlaid microdisc interfaces. Thus, t...
This thesis aimed to examine the behaviour of nanoscale and microscale liquid interfaces for chemic...
Microporous silicon membranes, fabricated by lithographic patterning and wet and dry silicon etchin...
Scanning electrochemical microscopy (SECM) has been proved to be a powerful technique to study molec...
Ion transfer across interfaces between immiscible liquids provides a means for the nonredox electroc...
Arrays of nanoscale interfaces between immiscible electrolyte solutions were formed using siliconnit...
In this work, independent radial diffusion at arrayed nanointerfaces between two immiscible electrol...
The electrochemical behaviour of hexagonally arranged nanopore arrays was studied by simple ion tran...
The electrochemical behaviour of single and arrayed nanoscale interfaces between two immiscible elec...
In this work, the ion-transfer voltammetric detection of the protonated -blocker propranolol was exp...
International audienceThe direct experimental characterization of diffusion processes at nanoscale r...
In this work, the ion-transfer voltammetric detection of the protonated β-blocker propranolol was ex...
Miniaturised liquid/liquid interfaces provide benefits for bioanalytical detection with electrochemi...
Herein, we feature our recent efforts toward the development and application of nanoelectrochemistry...
In this work, the ion-transfer voltammetric detection of the protonated β-blocker propranolol was ex...
Perm-selective ion transportation in a nanoscale structure such as nanochannel, nanoporous membrane ...
This thesis aimed to examine the behaviour of nanoscale and microscale liquid interfaces for chemic...
Microporous silicon membranes, fabricated by lithographic patterning and wet and dry silicon etchin...
Scanning electrochemical microscopy (SECM) has been proved to be a powerful technique to study molec...
Ion transfer across interfaces between immiscible liquids provides a means for the nonredox electroc...
Arrays of nanoscale interfaces between immiscible electrolyte solutions were formed using siliconnit...
In this work, independent radial diffusion at arrayed nanointerfaces between two immiscible electrol...
The electrochemical behaviour of hexagonally arranged nanopore arrays was studied by simple ion tran...
The electrochemical behaviour of single and arrayed nanoscale interfaces between two immiscible elec...
In this work, the ion-transfer voltammetric detection of the protonated -blocker propranolol was exp...
International audienceThe direct experimental characterization of diffusion processes at nanoscale r...
In this work, the ion-transfer voltammetric detection of the protonated β-blocker propranolol was ex...
Miniaturised liquid/liquid interfaces provide benefits for bioanalytical detection with electrochemi...
Herein, we feature our recent efforts toward the development and application of nanoelectrochemistry...
In this work, the ion-transfer voltammetric detection of the protonated β-blocker propranolol was ex...
Perm-selective ion transportation in a nanoscale structure such as nanochannel, nanoporous membrane ...
This thesis aimed to examine the behaviour of nanoscale and microscale liquid interfaces for chemic...
Microporous silicon membranes, fabricated by lithographic patterning and wet and dry silicon etchin...
Scanning electrochemical microscopy (SECM) has been proved to be a powerful technique to study molec...