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Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford University Sep 10, 2015 P

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Page 1: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Carbon-Based Materials for Flexible Electronics

Dr. Nan Liu Professor Zhenan Bao Group

Department of Chemical Engineering, Stanford University Sep 10, 2015

Page 2: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Flexible Electronics in Life

Page 3: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Approach to Flexible Electronics

   

Page 4: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Our Approach to Flexible Electronics

Silicon mould

ITO/PET

On OffFly on sensor

Cap

acita

nce

(× 1

0¬1

1 F)

10 20 30

Time (s)

40 50

2.88

2.87

2.86

2.85

2.84

2.89

2.83

PETApply pressure

ITO

Microstructured PDMS

Laminate

Pil2TSi semiconductingpolymer Thin PDMS

BCB

Polyimide

Au source / drain

Page 5: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Carbon-Based Materials: CNTs

Source/Drain

0

1

2

3

4

5

(1,1)(1,0)(0,1)

Vol

tage

(V)

(0,0)

0

1

2

3

4

5

(1,1)(1,0)(0,1)

Vol

tage

(V)

(0,0)

NAND Gate

Page 6: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Highly Robust All-CNT Stretchable Transistors

0->100% strain

Page 7: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Carbon-Based Materials: Graphene

• 

• 

Page 8: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Better Interaction between Carbon-Based Materials

Page 9: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Graphene-CNT Stretchable Transistors

Page 10: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Graphene toward Ideal Electronic Materials

Page 11: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Importance of Controlled Fermi Level

Page 12: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

• 

• 

Design New n-type Dopant

Page 13: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Process of Doping Graphene

Page 14: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Transport Behavior Before and After n-doping

Page 15: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

UPS Study Before and After n-doping

• • 

Page 16: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Application 1: Inverter

Page 17: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Application 2: p-n Junction

• 

• 

Page 18: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Fabrication of Graphene p-n Junctions

• • 

Page 19: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Formation of p-n Junctions

Page 20: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Photoresponse of p-n Junctions

Photocurrent density (10-4A/cm2) †

Photoresponsivity (mA/W)

(5.50±0.47) 104 (1.20±0.11) ) 104

• • • 

Page 21: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Transparent and Flexible IR Photodetectors

• • 

Page 22: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Summary I

• • 

Page 23: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Outline

Page 24: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Why Bandgap?

• • 

Page 25: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Bandgap in GNR

Eg(eV ) =0.8

w(nm)

Page 26: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Synthetic Approaches to GNRs — Bottom up

Page 27: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

DNA Bio-template to GNRs

Page 28: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

GNRs from DNA

Page 29: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Electrospinning

Page 30: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Electrospun Polymer to GNRs

Page 31: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Overview of the GNRs - Morphology

Page 32: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Overview of the GNRs – Electronic Properties

Page 33: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Effect of Chemical Structure on the Graphitization Degree

  

Page 34: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

  

Ω

Effect of Chemical Structure on the Graphitization Degree

Page 35: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Summary II

• • 

Page 36: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Conclusion

Page 37: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Acknowledgement

Page 38: Carbon-Based Materials for Flexible Electronics · Carbon-Based Materials for Flexible Electronics Dr. Nan Liu Professor Zhenan Bao Group Department of Chemical Engineering, Stanford

Any questions?