Scanning probe electrochemistry & biology research The role of scanning probe electrochemistry in biological systems Life sciencesSurface characterisation
Scanning probe Electrochemistry & battery research As demand for electric vehicles, portable electronics, and green energy storage grow, so too will the demand for better batteries. To improve on current battery technologies, researchers must intim... BatteryEnergy storage and conversion
PEIS or GEIS or GEIS-AA? That is the question. When Electrochemical Impedance Spectroscopy (EIS) should be performed under potentio control (PEIS), galvano control (GEIS) and when GEIS-AA should be used. BatteryEnergy storage and conversionResearch electrochemistryMaterials science
Automatic concentration dependence studies. Save precious time and eliminate human error dilutions Life sciencesRapid kinetics
Coupling potentiostats & spectrometers for spectroelectrochemical measurements One of the possibilities of characterizing intermediate species created during a redox process, is to couple a spectrometer with a potentiostat Analytical electrochemistry
Understanding the signaling pathways and molecular components of sperm using stopped-flow Professors Kaupp and Strünker report a 16µl consumption but the volume per experiment has been reduced to 3µl in other applications. Life sciencesRapid kinetics
Stopped-flow down to -90°C By coupling the SFM-series to a cryostat, the operating temperature limit can be decreased to -90°C allowing the chemical reaction to slow down more than 3000 times. Life sciencesRapid kinetics
Imaging the electrochemistry of photosynthesis How is scanning probe electrochemistry applied to the investigation of photosynthesis? Life sciencesSurface characterisation
Diffuse reflectance CD using an integration sphere Circular Dichroism is one technique to determine enantiomeric purity and it can be applied directly on solid samples. Life sciencesSpectroscopy