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Science Saturday --- October 1, 2005

Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

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Page 1: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Science Saturday --- October 1, 2005

Page 2: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

NanotechnologyExciting new science and technology

for the 21st century

IBM chip UMass Logo TI mirror array

Page 3: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Nanotechnology• Is a broad, interdisciplinary topic involving physics, chemistry, biology and engineering

• It has potential impact in electronics, medicine, materials, and a wide variety of application areas.

Page 4: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

How small are nanostructures?

Single Hair

Width = 0.1 mm

= 100 micrometers

= 100,000 nanometers !

1 nanometer = one billionth (10-9) meter

Page 5: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Smaller still

Hair

.

Red blood cell

6,000 nanometersDNA

3 nanometers

Page 6: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

How do we make nanostructures?

How do we see nanostructures?

Page 7: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

First,how do we make nanostructures?

• Lithography

• Self-assembly

Page 8: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Lithography

MarkTuominen

MarkTuominen

MarkTuominen

Page 9: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Making a microscopic mask

Silicon crystal

Polymer film

Electron Beam

Nanoscopic Mask !

Page 10: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Lithography

IBMCopperWiringOn aComputerChip

PatternedSeveral Times

Page 11: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

SELF ASSEMBLYBlock “A” Block “B”

10% A 30% A 50% A 70% A 90% A

~10 nm

Ordered Phases

PMMA PS

Scale set by molecular size

DiblockCopolymer

Page 12: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

BASIC NANOPOROUS TEMPLATEPROCESS APPLICATIONS Deposition

Template

EtchingMask

NanoporousMembrane

Remove polymerblock within cylinders(UV or ebeam exposure;Acetic acid rinse)

“A versatile, self-assembling, nanoscale lithographic system”

Page 13: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

SEM IMAGE OF NANOPOROUS POLYMER TEMPLATE

Array Period = 24 nm Pore Diameter = 14 nm

MW = 42,000PS/PMMA

Page 14: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

NIRTUMass Amherst

FUNCTIONAL NANOARRAYS

Glass Pillars

PatternedMedia

CopolymerTemplateSeparations

& Sensors

Template Transfer Nanowires

Devices

Page 15: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

NANOWIRE ARRAYS using ELECTRODEPOSITION

1.2 trillion wires/in2

200 nm

20 nm 100 nm

silicongold

electrodepositedcobaltnanowires

unfilled polymertemplate

cobaltnanowires

• ULTRA-HIGH DENSITY MAGNETIC DATA STORAGE

1 0 1 1 0

Page 16: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

unexposed regionof copolymer film

“patterned” nanowirearray

vertically-orienteddiblock copolymer film

“patterned” nanoporouspolymer template

LATERALLY-PATTERNED MEDIA

HOLES

NO HOLES

Page 17: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

How do we see nanostructures?

• A light microscope?

• An electron microscope!

• A scanning probe microscope!

Page 18: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Television Set

eye

electron beam

TV screen

Light !electronsource

Page 19: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Electron Microscope

SAMPLE

ElectronBeam

DETECTOR

Page 20: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Scanning probe microscope

Surface

Vibrating Cantilever

Page 21: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Image of Nickel Atoms

Page 22: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Pushing Atoms Around

Page 23: Science Saturday --- October 1, 2005. Nanotechnology Exciting new science and technology for the 21st century IBM chipUMass LogoTI mirror array

Finale