Title : β-Cyclodextrin coated porous Pd@Au nanostructures with enhanced peroxidase-like activity for colorimetric and paper-based determination of glucose.

Pub. Date : 2020 Jul 4

PMID : 32623601






4 Functional Relationships(s)
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1 The beta-CD-Pd@Au-catalyzed TMB-H2O2 chromogenic reaction exhibited higher absorbance intensity, catalytic efficiency, and color stability in comparison to 4-AAP/DHBS-H2O2 and 4-AAP/TOPS-H2O2 chromogenic reactions. Hydrogen Peroxide ACD shelterin complex subunit and telomerase recruitment factor Homo sapiens
2 The beta-CD-Pd@Au-catalyzed TMB-H2O2 chromogenic reaction exhibited higher absorbance intensity, catalytic efficiency, and color stability in comparison to 4-AAP/DHBS-H2O2 and 4-AAP/TOPS-H2O2 chromogenic reactions. Hydrogen Peroxide ACD shelterin complex subunit and telomerase recruitment factor Homo sapiens
3 The beta-CD-Pd@Au-catalyzed TMB-H2O2 chromogenic reaction exhibited higher absorbance intensity, catalytic efficiency, and color stability in comparison to 4-AAP/DHBS-H2O2 and 4-AAP/TOPS-H2O2 chromogenic reactions. Hydrogen Peroxide ACD shelterin complex subunit and telomerase recruitment factor Homo sapiens
4 The catalytic activity of beta-CD-Pd@Au was enhanced about 4-fold compared to that of Pd@Au in terms of Kcat for H2O2. Hydrogen Peroxide ACD shelterin complex subunit and telomerase recruitment factor Homo sapiens