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One-step construction of horseradish peroxidase (HRP) and glucose oxidase (GOD) bienzyme biosensor was established based on a simple and controllable electrodeposition approach by in-situ formation of biocomposite film on electrode.
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The special square wave voltammetric method was established based on application of fast Fourier transform (FFT) and continuously calculating the biosensor admittance in a time window.
Based on the annihilation between the oxidation product of Fc (Fc+) and Et3N radical, a quenching-based sandwich-configuration ECL biosensor was established for sensitive and specific detection of concanavalin A (ConA).
In this study, a surface plasmon resonance DNA biosensor based on RCA with a gold (Au) nanoparticle surface was established for isothermal identification of DNA.
The developed pSDSC4 AuNPs based creatinine biosensor will be established as simple, reliable and accurate tool for the determination of creatinine in human urine samples.
An electrochemical DNA biosensor was developed based on the AuNPs/CA/nBDD electrode.
In the present work, electrochemical DNA biosensor was developed based on the fBDD and the nBDD electrode.
Electrochemical DNA biosensor was developed based on the BDD film electrode (fBDD) and BDD nanograss array electrode (nBDD).
The fluorescent biosensor was based on the following two properties.
In both cases, the bioselective element of the SPR biosensor was based on the oligonucleotide P2.
The biosensor was based on cellular biorecognition elements, which are natural targets of the pesticide groups under investigation.
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