Development of a molecularly imprinted polymer for uric acid sensing based on a conductive azopolymer: Unusual approaches using electrochemical impedance …

HF Trevizan, A Olean-Oliveira, CX Cardoso… - Sensors and Actuators B …, 2021 - Elsevier
In the present study, we report the use of an electrochemical sensor for uric acid using a
molecularly imprinted polymer (MIP) as a molecular recognition platform. The MIP was …

Development of a molecularly imprinted polymer for uric acid sensing based on a conductive azopolymer: Unusual approaches using electrochemical impedance …

HF Trevizan, A Olean-Oliveira, CX Cardoso… - … AND ACTUATORS B …, 2021 - bv.fapesp.br
In the present study, we report the use of an electrochemical sensor for uric acid using a
molecularly imprinted polymer (MIP) as a molecular recognition platform. The MIP was …

Development of a molecularly imprinted polymer for uric acid sensing based on a conductive azopolymer: Unusual approaches using electrochemical impedance …

HF Trevizan, A Olean-Oliveira… - … and Actuators, B …, 2021 - repositorio.unesp.br
In the present study, we report the use of an electrochemical sensor for uric acid using a
molecularly imprinted polymer (MIP) as a molecular recognition platform. The MIP was …

Development of a molecularly imprinted polymer for uric acid sensing based on a conductive azopolymer: Unusual approaches using electrochemical impedance …

HF Trevizan, A Olean-Oliveira… - … and Actuators B …, 2021 - ui.adsabs.harvard.edu
Abstract Development of a sensor with EIS/ECS transduction without soluble redox probe. A
more in-depth electrochemical investigation of the phenomena of the analyte/polymer …

Development of a molecularly imprinted polymer for uric acid sensing based on a conductive azopolymer: Unusual approaches using electrochemical impedance …

HF Trevizan, A Olean-Oliveira, CX Cardoso… - 2021 - repositorio.unesp.br
In the present study, we report the use of an electrochemical sensor for uric acid using a
molecularly imprinted polymer (MIP) as a molecular recognition platform. The MIP was …

Development of a molecularly imprinted polymer for uric acid sensing based on a conductive azopolymer: Unusual approaches using electrochemical impedance …

HF Trevizan, A Olean-Oliveira, CX Cardoso… - … AND ACTUATORS B …, 2021 - bv.fapesp.br
In the present study, we report the use of an electrochemical sensor for uric acid using a
molecularly imprinted polymer (MIP) as a molecular recognition platform. The MIP was …