AI Article Synopsis

  • The study details a method for enhancing electrochemical sensors by modifying imprinted molecular cavities with a ferrocene tracer, allowing for better detection of target proteins.
  • These modifications result in a notable linear response for the sensors in the concentration range of 0.5 to 50 μM, indicating effectiveness in sensing applications.
  • However, sensors that did not undergo post-imprinting modification exhibited superior selectivity, and surface characterization through scanning electrochemical microscopy revealed differences in kinetics between modified and non-modified surfaces.

Article Abstract

Herein we described a post-imprinting modification of the imprinted molecular cavities for electrochemical sensing of a target protein. Imprinted molecular cavities were generated by following the semi-covalent surface imprinting approach. These mesoporous cavities were modified with a ferrocene 'electrochemical' tracer for electrochemical transduction of the target protein recognition. Electrochemical sensors prepared after post-imprinting modification showed a linear response in the concentration range of 0.5 to 50 μM. Chemosensors fabricated based on capacitive impedimetric transduction demonstrated that imprinted molecular cavities without post-imprinting modification showed better selectivity. Scanning electrochemical microscopy (SECM) was used for the surface characterization of imprinted molecular cavities modified with ferrocene electrochemical tracers. SECM analysis performed in the feedback mode monitor changes in the surface state of the ferrocene-modified polymer film. The kinetics of the mediator regeneration was almost 1.8 times higher on the non-imprinted surface the post-imprinting modified molecular imprinted polymer.

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Source
http://dx.doi.org/10.1039/d2tb02116aDOI Listing

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