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The proposed biosensor was characterized using glucose as the substrate.
The biosensor was characterized using glucose as the substrate.
The sensitivity and specificity of the biosensor was characterized using two types of electrochemical techniques; electrochemical impedance spectroscopy (EIS) and Mott-Schottky analysis on the same sensor platform to demonstrate multi-configurable modes.
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The biosensors were characterized using ultraviolet visible spectroscopy, ζ-potential and cyclic voltammetry to investigate the interactions between Hb, AgNPs and the PAMAM film.
A large panel of antibody-antigen interactions was characterized using MASS-1 and the kinetic data were compared with the Biacore 4000 biosensor.
The biosensors surfaces were characterized using scanning electron microscope (SEM), and electrochemical techniques.
The biosensor was characterized with infrared and scanning electron microscopy.
As seen in Fig. 9b, the biosensor was characterized by good operational stability over 4 days.
The morphology and the electrochemical properties of the constructed biosensor were characterized.
The properties of the resulting biosensor were characterized by various analytical methods.
The biosensor is characterized for its interaction with guanine and other nucleotides.
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