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bar-shaped disk-coupled dots-on-pillar antenna-arrays

Based on

1 Articles
2014 Most recent source

Composition

1

fused silica nanobars

Type Nano Material
Formula
Role raw materials
2

Au nanobars

Type Nano Material
Formula
Role layer
3

Au nanodots

Type Nano Material
Formula
Role partial layer
4

gold

Type Single Compound
Formula Au
Role layer

Applications

Area Application Nanomaterial Variant Source
sensors (excluding biosensors)

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Characterization

Method Nanomaterial Variant Source
infrared reflection-absorption spectroscopy

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Preparation

Method 1

Type: Physical formation
Source:
Starting materials
  • silicon dioxide
  1. MYt6ReYjFwXZcG8bXmbtiwNEh
  2. FhAZBVDIvyg72lBiGlVsDHIanuDsCMzzl
Product

bar-shaped disk-coupled dots-on-pillar antenna-arrays

Bar length: 700 nm

Bar width: 185 nm

Cavity gap: 35 nm

Diameter: 5 - 10 nm

Pillar height: 85 nm

Thickness: 50 nm

Medium: none

Support: silicon dioxide

Method 2

Type: Physical formation
Source:
Starting materials
  • silicon dioxide
  1. ezKnNvpRtsttA8LtWElv5UGTv
  2. 0ndg4uJFyR06i1tmDWt684gVe80JwpzOv
Product

bar-shaped disk-coupled dots-on-pillar antenna-arrays

Bar length: 700 nm

Bar width: 185 nm

Cavity gap: 20 nm

Diameter: 5 - 10 nm

Overhang on pillar perimeter: ~ 15 nm

Thickness: 50 nm

Medium: none

Support: silicon dioxide

Method 3

Type: Physical formation
Source:
Starting materials
  • silicon dioxide
  1. iLQlUxVDp4pZ4ZvrEHomvvZSA
  2. 6sDh275Tr7VWeDvGIx8OndpBwyy9Awq0L
Product

bar-shaped disk-coupled dots-on-pillar antenna-arrays

Bar length: 700 nm

Bar width: 185 nm

Cavity gap: 5 nm

Diameter: 5 - 10 nm

Pillar height: 55 nm

Thickness: 20 nm

Thickness: 50 nm

Medium: none

Support: silicon dioxide

References

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