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A non-enzymatic biosensor was developed using boron-doped nanocrystalline diamond (BDND) based on a Cu electrode with Cu(OH 2 dendritic architecture.
An amperometric glucose biosensor was developed using an anionic clay matrix (layered double hydroxide (LDH), Ni/Al NO3) for the immobilization of glucose oxidase (GOx).
A new, simple and effective amperometric acetylcholinesterase biosensor was developed using screen-printed carbon electrodes modified with carbon nanotubes (MWCNTs)–7,7,8,8-tetracyanoquinodimethane 7,7,8,8-tetracyanoquinodimethane
A highly stable and sensitive amperometric ethanol bi-enzyme biosensor was developed using alcohol oxidase isolated from thermotolerant methylotrophic yeast Hansenula polymorpha and horseradish peroxidase as biorecognition elements.
A l-lactate-selective microbial biosensor was developed using permeabilized cells of gene-engineered thermotolerant methylotrophic yeast Hansenula polymorpha, over-producing l-lactate cytochrome c-oxidoreductase (EC 1.1.2.3, fl-lactate cytochromeC b2).
An amperometric glucose biosensor was developed using an anionic clay matrix of hydrotalcitic nature (Ni/Al NO3 HT) as enzyme support, which was electrochemically synthesized at −0.90 V versus SCE, using a rotating disk Pt electrode to assure homogeneity of the electrodeposition suspension.
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A highly sensitive quartz crystal microbalance with dissipation monitoring (QCM-D) biosensor for protein was developed using aptamer-functionalized gold nanoparticles (Apt-GNPs) for amplification.
A novel amperometric biosensor for catechol was developed using the layer-by-layer (LbL) self-assembly of positively charged hexadecyltrimethylammonium stabilized gold nanocubes (AuNCs), negatively charged poly(sodium 4-styrenesulfonate) and tyrosinase on a screen printed carbon electrode (SPCE).
A reagentless biosensor for d-lactate was developed using the screen-printing technology.
In another related development, an ultrasensitive biosensor for influenza virus H1N1 RNA was developed using a near-infrared quinternary MPA-CdZnSeTeS alloyed Qdot-MB [27].
A micro-scale, free standing, wireless biosensor has been developed using magnetoelastic particles composed of an amorphous iron boron binary alloy.
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