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Jo, S. H. et al. Broad detection range rhenium diselenide photodetector enhanced by 3-aminopropyl triethoxysilanee and triphenylphosphine treatment.
With the aid of the MPNs@DOX@DNA2 and Nt.BbvCI assisted DNA walking mechanism, the designed ratiometric electrochemical biosensor showed a high sensitivity and broad detection range.
The method of the sensor construction is very simple and the sensor performed well, giving high sensitivity, high stability, and a broad detection range.
This work demonstrated a simple strategy to prepare an electrochemical cytosensor with the property of low cost, good biocompatible, broad detection range, low detection limit, good repeatability which may have potential large-scale application for improving cancer diagnosis and treatment.
The proposed cytosensor showed good performance for detection of cancer cells with a broad detection range of 3.0 × 102 to 1.0 × 107 cells/mL, and a low detection limit of 300 cells/mL.
Therefore, a bridge can be established between the concentration of target protein and the degree of the attenuation of the obtained signal, providing a quantitative measure of target protein with a broad detection range of 0.0001 1 nM and a detection limit of 20 fM.
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Under the optimum determination conditions, TbHCF/GR/CPE provided rutin with a broader detection range of 1.0 × 10−10 mol/L 6.0 × 10−6 mol/L with a minimum detectable concentration of 0.04 nmol/L.
The Ge/SiGe QDIP on SiGe VS displays a longer cutoff wavelength (approximately 12 μ m) and broader detection range as compared to conventional Ge/Si QDIPs due to smaller effective valence band offset at the Ge/Si 1−xGe x interface.
Indeed, QPCR appear to be more sensitive and have a broader detection range than microarray, but the deviating results still seem to imply a problem when comparing these types of experiments.
Highly specific detection of BXPC-3 cells with a broader detection range and a detection limit of 18 cells mL 1 has been achieved.
292 A broader detection range of pH was enabled by hydrolyzing PAAm copolymer 276 covering the visible regime from 550 nm to 800 nm, for pH from 2 to 10. Sensing Ions: For ionic sensing, designing a polymer backbone with analyte-selective binding molecular recognition groups (MRGs) is desirable.
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