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The development of an amperometric biosensor for herbicide detection, using bacterial reaction centers (RC) as biorecognition element, is presented.
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The ORs for herbicide detections were adjusted for agricultural employment because adjustment resulted in a change of 10% or more.
These properties have been exploited for the design of a simple optical biosensor for herbicide.
The Rhodobacter sphaeroides reaction centre was used as a biosensor for herbicides.
One application of purple bacterial RCs is their use as the active element in a photoelectrochemical biosensor for herbicides such as terbutryn that block photosynthetic electron transfer in plants by binding to the equivalent QB site in photosystem II.
A novel LSPR-induced biosensor for DNA detection has been developed using an AuNP-SiO2-Qdots-MB biosensor.
An amperometric biosensor for the detection of paraoxon was designed.
This was utilised as an enzyme-free biosensor for glucose detection.
Bimetallic nanoparticles also have been used for enzymeless biosensors, and Luo et al. developed a PdCu nanoparticle-decorated 3D graphene hydrogel-based biosensor for the detection of glucose.
A highly selective electrochemical biosensor for the detection of Hg2+ in aqueous solution has been developed.
In this paper, a single-wall carbon nanotube field-effect transistor biosensor for glucose detection is analytically modeled.
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