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The proposed biosensor exhibited excellent analytical performance toward the cytosensing of K562 cells with a wide detection linear range from 1.0 × 102 to 2.0 × 107 cells mL−1 and a detection limit of 31 cells mL−1.
The novel Ag NPs-N-GQDs-TMB-H2O2 system exhibits high sensitivity and selectivity for the detection of GSH with a low detection limit of 31 nM and a wide detection linear range of 0.1 157.6 μM.
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Comparison with SPCM and glass beads, SHPCM could provide the more wide dynamic detection linear range and lower background signal.
Using MCF-7 CTCs as model target, the proposed ratiometric ECL sensor exhibited excellent analytical performance with a wide linear detection range and a detection limit down to 2 cells.
The AuAg-GR based sensor could sensitively detected neurotransmitter serotonin (5-HT) with wide linear detection range (2.7 nM to 4.82 μM), very low detection limit (1.6 nM), negligible interference, and excellent reproducibility.
The amperometric response of the AuNP-FLG based electrode achieved an excellent electrocatalytic activity towards glucose oxidation with a wide linear detection range of 6 μmM28.5 mM, low detection limit of 1 μM and a sensitivity of 0.195 μA mM−1 cm−2 at operating potential of 0.0 V.
The wide linear detection range obtained in this study for the detection of acetaminophen showed strong potential as a promising sensing technique for pharmaceuticals, in terms of quality control and in clinical laboratories for acetaminophen as relates to the determination of hepatotoxicity.
The proposed strategy showed a wide linear detection range from 0.003 to 30 nM with a detection limit of 1.1 pM.
Consequently, on the basis of the ECL intensity change of peroxydisulfate, the proposed immunosensor has realized ultrasensitive PGE1 assay with a wide linear detection range of 0.1 fg/ml to1 ng/ml and a detection limit of 0.1 fg/ml.
The proposed electrochemical sensor exhibits remarkable electrocatalytic activity towards Ponceau 4R, suggesting a potentially detailed reaction mechanism catalyzed by ε-MnO2 and demonstrating a wide linear detection range from 0.005 to 1000 μmol dm−3 and a low detection limit of 0.1 nmol dm−3 (S/N = 3) for Ponceau 4R.
As the electrode materials of an non-enzymatic H2O2 biosensor, the Ni II -MOFs/CNTs exhibited excelleNi II -MOFs/CNTstic pexhibitedexcellentng a widelectrocatalyticon range from 0.01 to 51.6 mmol L−1, low detection limit of 2.1 μmol L−1 and very fast resperformance5 s for H2O2 sensincluding
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com