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Py/Cu/Pd50Mn50 structure

Based on

1 Articles
2014 Most recent source

Composition

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

1

nickel-iron alloy

nickel iron alloy nickel-iron alloy nickel iron film Ni80Fe20 alloy Ni-Fe alloy Fe-Ni alloy Permalloy permalloy Ni-0.2Fe Ni80Fe20 NiFe Py
Type Single Compound
Formula Ni80Fe20
Role layer
2

copper

Type Single Compound
Formula Cu
Role layer
3

palladium-manganese alloy

PdMn alloy
Type Single Compound
Formula Pd50Mn50
Role layer

Properties

General physical and chemical properties

Property Value Nanomaterial Variant Source
anisotropic magnetoresistance (AMR)

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Applications

Area Application Nanomaterial Variant Source
electronics

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Preparation

Method 1

Type: Physical formation
Source:
Starting materials
  • SiO2/Si
Product

Py/Cu/Pd50Mn50 structure

Thickness: 0.5 nm

Thickness: 15 nm

Thickness: 4 nm

Width: 20000 nm

Medium: none

Support: SiO2/Si

Method 2

Type: Physical formation
Source:
Starting materials
  • SiO2/Si
Product

Py/Cu/Pd50Mn50 structure

Thickness: 15 nm

Thickness: 4 nm

Thickness: 8 nm

Width: 20000 nm

Medium: none

Support: SiO2/Si

Method 3

Type: Physical formation
Source:
Starting materials
  • SiO2/Si
Product

Py/Cu/Pd50Mn50 structure

Thickness: 15 nm

Thickness: 4 nm

Width: 20000 nm

Medium: none

Support: SiO2/Si

Method 4

Type: Physical formation
Source:
Starting materials
  • SiO2/Si
Product

Py/Cu/Pd50Mn50 structure

Thickness: 15 nm

Thickness: 3 nm

Thickness: 4 nm

Width: 20000 nm

Medium: none

Support: SiO2/Si

Method 5

Type: Physical formation
Source:
Starting materials
  • SiO2/Si
Product

Py/Cu/Pd50Mn50 structure

Thickness: 15 nm

Thickness: 4 nm

Width: 20000 nm

Medium: none

Support: SiO2/Si

References

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