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(polyCpCoCb50-r-PMA150)-b-(PS(P+AuCl4-)100) micelles

Based on

1 Articles
2015 Most recent source

Composition

Image only illustrates the order and placement of components as described in literature.

1

(polyCpCoCb50-r-PMA150)-b-(PS(P+AuCl4-)30)

Type Polymer
Formula
Role raw materials

Properties

Applications

Characterization

Method Nanomaterial Variant Source
dynamic light scattering

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Biological effects

Preparation

Method 1

Type: Physical formation
Source:
Starting materials
  • benzene
  • (polyCpCoCb50-r-PMA150)-b-(PS(P+AuCl4-)30)
  • methylene chloride
  1. yiYouPWTVdVh1sqn3ujWr64u5NH3hmxXhWTNlFgAfeX38H0
Product

(polyCpCoCb50-r-PMA150)-b-(PS(P+AuCl4-)100) micelles

Diameter: 35 - 45 nm

Hydrodynamic radius: 50 nm

Medium: dichloromethane/benzene mixture

Support: none

Method 2

Type: Physical formation
Source:
Starting materials
  • (polyCpCoCb50-r-PMA150)-b-(PS(P+OTf-)100)
  • methanol
  • tetramethylene oxide
  1. m62OsfXyiMIQBmejY2T7iQX0Z62WgxRbK79p
Product

(polyCpCoCb50-r-PMA150)-b-(PS(P+AuCl4-)100) micelles

Diameter: 45 - 65 nm

Hydrodynamic radius: 130 nm

Medium: THF/methanol mixture

Support: none

Method 3

Type: Physical formation
Source:
Starting materials
  • benzene
  • (polyCpCoCb50-r-PMA150)-b-(PS(P+AuCl4-)30)
  • methylene chloride
  1. UxYi82xlbOhmwGWroJMPq9oZ4euMGLmEjnqh4hGaeU5UtVy
Product

(polyCpCoCb50-r-PMA150)-b-(PS(P+AuCl4-)100) micelles

Diameter: 43 - 57 nm

Hydrodynamic radius: 68 nm

Medium: dichloromethane/benzene mixture

Support: none

Method 4

Type: Physical formation
Source:
Starting materials
  • methanol
  • (polyCpCoCb50-r-PMA150)-b-(PS(P+OTf-)30)
  • tetramethylene oxide
  1. HzLAEnSPvRNL36aTKlu7T5Y7gPtQLe1wYnCs
Product

(polyCpCoCb50-r-PMA150)-b-(PS(P+AuCl4-)100) micelles

Diameter: 20 - 30 nm

Hydrodynamic radius: 50 nm

Medium: THF/methanol mixture

Support: none

References

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