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Reactive Ion Etching (RIE)
1
2
3
4
5
6
7
RF plasma chemistry
CF4 plasma
8
Si etch
RIE/plasma etch gases
9
Most lab systems have only fluorine-based gases (SF6, CF4, CHF3) since they are relatively
safe; chlorine-based gases are corrosive. Most RIE has Ar and O2 gas, some has H2 and He.
10
Etch byproducts should have low boiling point
Boiling points of typical etch products
Low boiling point means very volatile, so it can be pumped away.
This is not necessary for physical etching/sputtering, where etch product is
sputtered off that ideally doesn’t fall on the other part of the wafer (re-deposition).
11
12
Dry etching advantages:
• Eliminates handling of dangerous acids and solvents
• Uses small amounts of chemicals
• Isotropic or anisotropic/vertical etch profiles
• Directional etching without using the crystal orientation of Si
• Faithful pattern transfer into underlying layers (little feature size loss)
• High resolution and cleanliness
• Less undercutting
• Better process control
Dry etching disadvantages:
• Some gases are quite toxic and corrosive.
• Re-deposition of non-volatile compound on wafers.
• Expensive equipment ($200-500K for R&D, few million for industrial tools ).
13
Patterning by RIE
14
15
Before RIE After RIE
RIE conditions: O2 environment, O2 flow rate : 50 sccm, time : 2 min,
RF power: 200 W
Patterning of graphene by RIE
200 μm
Thank you
16

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Reactive ion etching (RIE)

  • 2. 2
  • 3. 3
  • 4. 4
  • 5. 5
  • 6. 6
  • 7. 7
  • 8. RF plasma chemistry CF4 plasma 8 Si etch
  • 9. RIE/plasma etch gases 9 Most lab systems have only fluorine-based gases (SF6, CF4, CHF3) since they are relatively safe; chlorine-based gases are corrosive. Most RIE has Ar and O2 gas, some has H2 and He.
  • 10. 10
  • 11. Etch byproducts should have low boiling point Boiling points of typical etch products Low boiling point means very volatile, so it can be pumped away. This is not necessary for physical etching/sputtering, where etch product is sputtered off that ideally doesn’t fall on the other part of the wafer (re-deposition). 11
  • 12. 12
  • 13. Dry etching advantages: • Eliminates handling of dangerous acids and solvents • Uses small amounts of chemicals • Isotropic or anisotropic/vertical etch profiles • Directional etching without using the crystal orientation of Si • Faithful pattern transfer into underlying layers (little feature size loss) • High resolution and cleanliness • Less undercutting • Better process control Dry etching disadvantages: • Some gases are quite toxic and corrosive. • Re-deposition of non-volatile compound on wafers. • Expensive equipment ($200-500K for R&D, few million for industrial tools ). 13
  • 15. 15 Before RIE After RIE RIE conditions: O2 environment, O2 flow rate : 50 sccm, time : 2 min, RF power: 200 W Patterning of graphene by RIE 200 μm