Monitoring pH changes at the micro/nano scale is essential to gain a fundamental understanding of surface processes. Detection of local pH changes at the electrode/electrolyte interface can be achieved through the use of micro-/nano-sized pH sensors. When combined with scanning electrochemical microscopy (SECM), these sensors can provide measurements with high spatial resolution. This article reviews the state-of-the-art design and fabrication of micro-/nano-sized pH sensors, as well as their applications based on SECM. Considerations for selecting sensing probes for use in biological studies, corrosion science, in energy applications, and for environmental research are examined. Different types of pH sensitive probes are summarized and com...
pH Changes in the vicinity of a platinum electrode immersed in a 10(-4) mol dm(-3) H2SO4+0.5 mol dm(...
This review describes work done in scanning electrochemical microscopy (SECM) since 2000 with,in emp...
Probing pH gradients during electrochemical reactions is important to better understand reaction mec...
Localized pH measurements are important in various areas of electrochemistry, from corrosion to bio-...
This chapter discusses the soft microfluidic scanning electrochemical microscopy (SECM) probes repre...
This chapter combines microfluidics and conventional scanning electrochemical microscopy (SECM) by d...
Nanoscale pH evaluation is a prerequisite for understanding the processes and phenomena occurring at...
This work describes the development of a nanostructured palladium microe1ectrode for use in scanning...
Scanning electrochemical microscopy (SECM) is a scanning probe technique where typically micro- or n...
International audienceIn this work, the pH conditions during chromium electrodeposition are investig...
A novel composite scanning micro pH electrode was fabricated. The IrO x-pH electrode produced in a c...
The detection of local variations of the proton activity is of interest in many fields such as corro...
Nanosciences, in general and nanobiophysics, in particular,have taken much advantage of the advent o...
A new method for the spatially-resolved measurement of pH during corrosion processes with the scanni...
Concurrent mapping of chemical reactivity and morphology of heterogeneous electrocatalysts at the na...
pH Changes in the vicinity of a platinum electrode immersed in a 10(-4) mol dm(-3) H2SO4+0.5 mol dm(...
This review describes work done in scanning electrochemical microscopy (SECM) since 2000 with,in emp...
Probing pH gradients during electrochemical reactions is important to better understand reaction mec...
Localized pH measurements are important in various areas of electrochemistry, from corrosion to bio-...
This chapter discusses the soft microfluidic scanning electrochemical microscopy (SECM) probes repre...
This chapter combines microfluidics and conventional scanning electrochemical microscopy (SECM) by d...
Nanoscale pH evaluation is a prerequisite for understanding the processes and phenomena occurring at...
This work describes the development of a nanostructured palladium microe1ectrode for use in scanning...
Scanning electrochemical microscopy (SECM) is a scanning probe technique where typically micro- or n...
International audienceIn this work, the pH conditions during chromium electrodeposition are investig...
A novel composite scanning micro pH electrode was fabricated. The IrO x-pH electrode produced in a c...
The detection of local variations of the proton activity is of interest in many fields such as corro...
Nanosciences, in general and nanobiophysics, in particular,have taken much advantage of the advent o...
A new method for the spatially-resolved measurement of pH during corrosion processes with the scanni...
Concurrent mapping of chemical reactivity and morphology of heterogeneous electrocatalysts at the na...
pH Changes in the vicinity of a platinum electrode immersed in a 10(-4) mol dm(-3) H2SO4+0.5 mol dm(...
This review describes work done in scanning electrochemical microscopy (SECM) since 2000 with,in emp...
Probing pH gradients during electrochemical reactions is important to better understand reaction mec...