les leds à base de l’oxyde de zinc

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© June 26th 2007 Les LEDs à Base de l’Oxyde de Zinc D. Rogers : Nanovation & Universite de Technologie de Troyes F. Hosseini Teherani : Nanovation, France © June 26th 2007 nanovation 1. Problems with Todays LEDs 2. ZnO vs GaN 3. Nanovation Overview 4. ZnO as a Buffer for GaN 5. ZnO LEDs 6. Future Perspectives OUTLINE

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Page 1: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

Les LEDs à Base de l’Oxyde de Zinc

D. Rogers : Nanovation & Universite de Technologie de Troyes

F. Hosseini Teherani : Nanovation, France

© June 26th 2007

nanovation

1. Problems with Todays LEDs

2. ZnO vs GaN

3. Nanovation Overview

4. ZnO as a Buffer for GaN

5. ZnO LEDs

6. Future Perspectives

OUTLINE

Page 2: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovation

1. Problems with Todays’ WhiteLEDs

© June 26th 2007

nanovationWhite LED Efficiency vs Lighting Alternatives

Commercial

White LED

Source : Compound Semiconductor

Page 3: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovationProblems for LEDs in the General Lighting Market

Better Efficiency& Lifetime isNot Enough!!!!

Source : Sandia National Labs

CFL < 10% of general lightingmarket after 20years……

© June 26th 2007

nanovationProblems for LEDs in General Lighting Market

Low Power Rating:• Many LEDs Needed• High Total Cost*

*In $/lm white LEDs cost more than 50x more than incandescent bulbsSource : Compound Semiconductor

Page 4: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

Need Very Efficient UV LEDsnanovation

For General Lighting Applications Need:- UV Electroluminescence (EL) : preferably < 350nm- 150 lm/W (Optoelectronics Industry Development Association)

© June 26th 2007

nanovationLED Target Efficiency For General Lighting

Commercial

White LED

OIDA General Lighting Target

Source : Compound Semiconductor

Page 5: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovation

2. ZnO vs GaN?

© June 26th 2007

nanovationZnO Publications

N u m b e r o f P u b l i c a t i o n s i n A p p l i e d P h y s i c s L e t t e r s v s Y e a r

0

5 0

100

150

200

250

300

350

400

1993

1994

1995

1996

1997

1998

1999

2000

2001

2002

2003

2004

2005

2006

Y e a r

Num

ber

of P

ublic

atio

ns

S iC

ZnO

G a N

Page 6: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovationSome Key ZnO Properties

Chen et al.: Materials Science and Engineering B75 (2000) 190–198

GaN and ZnO: very similar

© June 26th 2007

nanovation

3. Nanovation

Page 7: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovationProduct : thin films of zinc oxide (ZnO)

Substrate

ZnO

© June 26th 2007

SAW Devices

Top-downPhotonic Crystal

type nanostructures

UV ZnO/GaN LEDsUV GaN/ZnO LEDs

Bottom-upnano ZnO

300nm

UV Homojunction LEDs

Page 8: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

Chips

Active Layer

Systemization

Substrate

nanovationPositioning nanovation in the LED Fabrication Chain

Encapsulation

© June 26th 2007

Chips

Active Layer

Systemization

Substrate

nanovationPositioning nanovation in the LED Fabrication Chain

Encapsulation

Lead Product

HIGHERPERFORMANCE

LED

Page 9: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

Chips

Active Layer

Systemization

Substrate

nanovationPositioning nanovation in the LED Fabrication Chain

Encapsulation

Follow-up

Products

DISRUPTIVE TECHNOLOGYALLOW LEDs TO ATTACK

LIGHTING MARKET

© June 26th 2007

nanovation

4. ZnO Buffer Layers for GaN

Page 10: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovationMain 2 Substrates Currently Used for GaN

Silicon Carbide

Silic on Ca rb ide

- Ele ct rode

+ Ele ct rod e

Ga N p

GaN n

• conducting• opaque• ~ $500 (2 inch)• Cree, Osram

Sapphire

Sa p p h ire

- Ele ct rod e

+ Ele ct rode

Ga N p

GaN n

• insulating• transparent• ~ $40 (2 inch)• Nichia, Toyoda Gosei, Lumileds, Osram

© June 26th 2007

nanovationZnO as a Substrate for GaN: Theory

g

Fukuda et al.: SOXESS ZnO workshop 2003

ZnO � less lattice &thermal mismatch thansapphire or SiC

Page 11: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

ZnO as a Substrate for GaN: Theory

Li et al.: Proc. of SPIE (2006)

GaN on ZnO� compressive strain� reduced cracking

© June 26th 2007

c-Al2O3 Substrate

ZnO

nanovationThin Film Growth

PLD

GaN MOVPE

Page 12: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

FEG-SEM Image of FIB Cross-section

GaN & ZnO continuousSmooth interface & surface

Pt coating forcharge dissipation

© June 26th 2007

nanovation

So What?

Page 13: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovationProblems of Current GaN based LEDs

Substrate electrically & thermally insulating

� Lateral LED� Complex top contacts

Source: Compound Semiconductor, 2006

Top contact issues:� Patent protected� Increased device size

Want GaN on conductingsubstrate

© June 26th 2007

nanovationProblems of Current GaN based LEDs

Substrate electrically &

thermally insulating � Heating

�Current crowding� Dynamic resistance

Want GaN on conductingsubstrate

Page 14: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovationSacrificial Etching of ZnO � Chemical Lift-off of GaN

InsulatingSapphire

ZnO

GaN

InsulatingSapphire

GaN

TransparentConductingSubstrate

GaN

Lift-offWafer Bonding

© June 26th 2007

nanovation

Successfully grew wurzite GaN on ZnO/cAl2O3 templates

Achieved chemical lift-off of GaN

Can bond on thermally & electrically conducting substrate

This low-cost approach should allow vertical LEDs with

superior brightness, efficiency & lifetime.

GaN/ZnO Summary

Page 15: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovation

5. ZnO LEDs

© June 26th 2007

nanovationSome Key ZnO Properties

Chen et al.: Materials Science and Engineering B75 (2000) 190–198

GaN and ZnO: very similar

ZnO has more Light emitting

potential!

Page 16: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovation

6. Future Perspectives

© June 26th 2007

nanovationHistory of Red LEDs � Haitzs’ Law

Source: Physics today & Lumileds

0.001

0.01

0.1

1

10

100

1000

1970 1980 1990 2000 2010

Performance (lm/package)

Per

form

ance

(lm

/pac

kage

)

Year

Cost ($/lm)

& C

ost (

$/lm

)

1.Improving LED Performance 2. Reducing LED Costs

Page 17: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

nanovationHaitz Law for GaN White LEDs?

Commercial

GaN LED

Source : Compound Semiconductor

Haitz Law FutureOIDA Target

© June 26th 2007

nanovationZnO Based Future?

Commercial

GaN LED

ZnO LED?

Source : Compound Semiconductor

OIDA Target

Page 18: Les LEDs à Base de l’Oxyde de Zinc

© June 26th 2007

High quality 2 inch ZnO epiwafers Now Commercially Available!!

High quality 2 inch ZnO epiwafers Now Commercially Available!!

Now looking for investors & development partners

[email protected]

© June 26th 2007

nanovationPARTNERS