AgNPs@GQDs

Materials

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material
size
size err
size unit
size type
size comment
BET
b nanozyme
b 10n
b unit
specific act
sa 10n
sa unit
comment
1342AgNPs@GQDs14-24nmTEMIn comparison, AgNPs without the assembly of GQDs show the morphology with a little aggregation (Fig. S1 in Supporting information), which are smaller than that of AgNPs@GQDs (14−24 nm). Upon treating with H2O2, the characteristic nanoparticles of AgNPs@GQDs disappear, and the monodisperse nanodots with the average diameter of 6.7 nm are observed in TEM image25.3479

Kinetics

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material
enzyme type
substrate
pH
T
km
km err
km 10n
km unit
vmax
vmax err
vmax 10n
vmax unit
kcat
kcat err
kcat 10n
kcat unit
kcat/km
kcat/km 10n
kcat/km unit
comment
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Applications

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material
application
target
method
linear range
linear ran unit
LOD
lod unit
recovery
comment
1342AgNPs@GQDsdetection of H2O2H2O2Color0.08-40μM0.025μM
1342AgNPs@GQDsdetection of H2O2H2O2Fluor2-60μM0.83μM
1342AgNPs@GQDsdetection of glucoseglucoseColor0.5-50μM0.17μM92.89%–104.44%
1342AgNPs@GQDsdetection of glucoseglucoseFluor5-100μM1.31μM

References

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title
DOI
material type
comment
1342Synergistic in-situ growth of silver nanoparticles with nanozyme activity for dual-mode biosensing and cancer theranosticshttps://doi.org/10.1016/j.cclet.2020.09.013CompositeAgNPs@GQDs is prepared by synergistic in-situ growth of silver nanoparticles (AgNPs) on the complex of tannic acid (TA) and graphene quantum dots (GQDs)