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Scanning electrochemical microscope systems are precision scanning microelectrode system. It is used to monitor current flowing between a microelectrode and a specimen surface in solution at extremely high spatial resolutions. It can be used to examine, analyze or alter the surface chemistry of a sample in solution. This equipment has many potential applications in the study of fundamentals of surface reactions.
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Scanning electrochemical workstations are designed for ultra-high resolution, spatially resolved electrochemical measurements. It uses a fast and precise, closed loop x, y, z positioning system with nanometer resolution, along with a flexible data acquisition system enabling the user to select the configuration most suited to their experiments. The system is designed with flexibility and the design ergonomics ensure convenient cell, sample and probe access.
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Scanning kelvin probe systems are non-contact, non-destructive instrument. It is designed to measure the surface work function difference between conducting, coated, or semi-conducting materials and a metallic probe. It operates using a vibrating capacitance probe, and through a swept backing potential, the work function difference is measured between the scanning probe reference tip and sample surface. The work function can be directly correlated to the surface condition. It has ability to make measurements in a humid or gaseous environment.
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