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plasmonic nanostructures

Based on

1 Articles
2015 Most recent source

Composition

1

nanostructured array

Type Nano Material
Formula
Role raw materials
2

titanium(IV) oxide

titanium dioxide titanium oxide titania
Type Single Compound
Formula TiO2
Role layer
3

upconversion ytterbium and erbium co-doped sodium yttrium fluoride (NaYF4:Yb3+/Er3+) nanoparticles

Type Nano Material
Formula
Role layer

Properties

General physical and chemical properties

Property Value Nanomaterial Variant Source
luminescence enhancement dependent on emission region

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Applications

Characterization

Method Nanomaterial Variant Source
luminescence spectroscopy

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Biological effects

Preparation

Method 1

Type: Physical formation
Source:
Starting materials
  • gold
  • soda-lime-silica glass
  • chromium
Product

plasmonic nanostructures

Thickness: 200 - 240 nm

Thickness: ~ 10 nm

Medium: none

Support: soda-lime-silica glass

Method 2

Type: Physical formation
Source:
Starting materials
  • gold
  • soda-lime-silica glass
  • chromium
Product

plasmonic nanostructures

Thickness: 200 - 240 nm

Thickness: ~ 10 nm

Medium: none

Support: soda-lime-silica glass

Method 3

Type: Physical formation
Source:
Starting materials
  • gold
  • soda-lime-silica glass
  • chromium
Product

plasmonic nanostructures

Thickness: 200 - 240 nm

Thickness: ~ 10 nm

Medium: none

Support: soda-lime-silica glass

Method 4

Type: Physical formation
Source:
Starting materials
  • gold
  • soda-lime-silica glass
  • chromium
Product

plasmonic nanostructures

Thickness: 200 - 240 nm

Thickness: ~ 10 nm

Medium: none

Support: soda-lime-silica glass

Method 5

Type: Physical formation
Source:
Starting materials
  • gold
  • soda-lime-silica glass
  • chromium
Product

plasmonic nanostructures

Thickness: 200 - 240 nm

Thickness: ~ 10 nm

Medium: none

Support: soda-lime-silica glass

References

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