Home » Carbon Screen Printed Electrodes (3-electrodes)
|Product||Carbon Screen Printed Electrodes|
|Diameter of WE||2 mm||Confirm|
|Size of RE||0.5 x 1 mm||Confirm|
|Ratio CE/WE Surface Area||4/1||Confirm|
|Overall Dimension||50 x 10mm||Confirm|
|Thickness of Coated Material||10 µm||Confirm|
|Quality Control||Each lot of Carbon Screen Printed Electrodes was tested successfully.|
|Main Inspect Verifier||Manager QC|
carbon screen printed electrodes, based on thick film technology, are largely diffused in electrode preparation, especially for disposable and easy to be used electrochemical sensors. The practical utility of these probes has been developed despite the fact that the nature of the reactions at these electrodes is still poorly known. The requirements of a rapid and simple analytical screening pushed towards development of electrodes material at low preparation costs which maintains the property of high sensitivity and good stability of the response for on-field, on-line monitoring processes. Screen printing consists of placing the paste containing the electrode material on the opposite side of a screen with a well defined mesh sizes and forcing the squeegee over the ink pastes.
carbon screen printed electrodes electrochemical sensor on a ceramic substrate for use in biomedical applications. Electrochemical sensors are a highly sensitive and portable solution for many different applications. These include glucose bionsensors for diabetes care, assurance of food quality and safety or electrochemical impedance spectroscopy (EIS) biosensors for molecular diagnostics in point of care applications.
carbon screen printed electrodes based on carbon, gold, platinum, silver or carbon nanotubes inks. Innovative strips manufactured for electrochemical analysis in environmental, clinical or agri-food areas. Low cost, disposable devices specially designed to work with microvolumes of sample.
carbon screen printed electrodes innovative, low cost and effective screen printed graphene–carbon paste electrode (SPGE) for advanced electrochemical sensing. screen printed carbon paste electrode, respectively. In addition, excellent analytical features with relatively wide dynamic ranges, high sensitivities, low detection limits and high reproducibility are achieved. Therefore, the SPGE is a promising candidate for low-cost and advanced electrochemical sensing applications.
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