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vancomycin-loaded DA-capped Fe3O4 NP-coated HA-DA-capped NH2-functionalized mesoporous SiO2-coated GO nanosheets

Based on

1 Articles
2016 Most recent source

Composition

1

hyaluronic acid-dopamine conjugate-encapsulated amino-functionalized mesoporous silica-coated graphene oxide nanosheets

hyaluronic acid/dopamine-coated graphene-mesoporous silica nanosheets HA-DA-coated NH2-functionalized mesoporous SiO2-coated GO nanosheets HA-dopamine-conjugated graphene oxide-mesoporous silica nanosheets HA-DA-capped GO-mesoporous SiO2 nanosheets
Type Nano Material
Formula
Role core
2

vancomycin-loaded dopamine-coated magnetite nanoparticles

vancomycin-loaded DA-capped Fe3O4 nanoparticles vancomycin-coated dopamine-capped magnetite NP vancomycin-loaded DA-coated Fe3O4 NP
Type Nano Material
Formula
Role layer

Properties

General physical and chemical properties

Property Value Nanomaterial Variant Source
laser irradiation-induced heating dependent on concentration

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Catalytic properties

Reaction Value Nanomaterial Variant Source
2,2`-azinobis-(3-ethylbenzothiazoline-6-sulfonate) oxidation

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Applications

Area Application Nanomaterial Variant Source
catalysis

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Characterization

Method Nanomaterial Variant Source
atomic force microscopy

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Biological effects

Biological system Test details Nanomaterial Variant Source
E. coli (ATCC 25922)

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Preparation

Method 1

Type: Physical formation
Source:
Product

vancomycin-loaded DA-capped Fe3O4 NP-coated HA-DA-capped NH2-functionalized mesoporous SiO2-coated GO nanosheets

Size: not specified

Medium: water

Support: none

Method 2

Type: Physical formation
Source:
  1. CXG697K7f
Product

vancomycin-loaded DA-capped Fe3O4 NP-coated HA-DA-capped NH2-functionalized mesoporous SiO2-coated GO nanosheets

Size: not specified

Medium/Support: none

References

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