cross-section of a bundle of single walled nanotubes thess et al nature

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Cross-section of a bundle of single walled nanotubes Thess et al Nature

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Page 1: Cross-section of a bundle of single walled nanotubes Thess et al Nature

Cross-section of a bundle of single walled

nanotubes

Thess et al Nature

Page 2: Cross-section of a bundle of single walled nanotubes Thess et al Nature

Cross-section of a bundle of single walled

nanotubes

Thess et al Nature

Page 3: Cross-section of a bundle of single walled nanotubes Thess et al Nature

1.4nm

Page 4: Cross-section of a bundle of single walled nanotubes Thess et al Nature
Page 5: Cross-section of a bundle of single walled nanotubes Thess et al Nature

SWNTs

Possible Formation mechanism

catalyst - C60

covered in Ni and Co

Page 6: Cross-section of a bundle of single walled nanotubes Thess et al Nature
Page 7: Cross-section of a bundle of single walled nanotubes Thess et al Nature

3.4 nm

Ferrocene interplanar distance is 3.4nm

Page 8: Cross-section of a bundle of single walled nanotubes Thess et al Nature

0.7nm

0.35nm

0.35nm

1.4nm

Page 9: Cross-section of a bundle of single walled nanotubes Thess et al Nature

Cross-section of a bundle of SWNTs with C60 molecules inside (Thess et

al)

1nm

Page 10: Cross-section of a bundle of single walled nanotubes Thess et al Nature

C60 molecules inside a SWNT Smith, Monthioux and Luzzi Nature

1998

2nm

Page 11: Cross-section of a bundle of single walled nanotubes Thess et al Nature
Page 12: Cross-section of a bundle of single walled nanotubes Thess et al Nature

• Bundles of SWNTs

• Formed by laser ablation of graphite

• Ni and Co present

• Diameters fairly uniform ca 1.4nm

• Conditions ideal for C60 formation

Page 13: Cross-section of a bundle of single walled nanotubes Thess et al Nature
Page 14: Cross-section of a bundle of single walled nanotubes Thess et al Nature

0.34 nm

Ferrocene

Page 15: Cross-section of a bundle of single walled nanotubes Thess et al Nature

Graphene sheet nucleation zone

C60

Ni/Co atoms

Page 16: Cross-section of a bundle of single walled nanotubes Thess et al Nature

Graphene sheet nucleation zone

C60

Ni/Co atoms

Page 17: Cross-section of a bundle of single walled nanotubes Thess et al Nature
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C60 molecules inside a SWNT Smith, Monthioux and Luzzi Nature

1998

2nm

Page 46: Cross-section of a bundle of single walled nanotubes Thess et al Nature

C60 molecules inside a SWNT Smith, Monthioux and Luzzi Nature

1998

2nm

Page 47: Cross-section of a bundle of single walled nanotubes Thess et al Nature

C60 molecules inside a SWNT Smith, Monthioux and Luzzi Nature

1998

2nm

Page 48: Cross-section of a bundle of single walled nanotubes Thess et al Nature

C60 molecules inside a SWNT Smith, Monthioux and Luzzi Nature

1998

2nm

Page 49: Cross-section of a bundle of single walled nanotubes Thess et al Nature

C60 molecules inside a SWNT Smith, Monthioux and Luzzi Nature

1998

2nm

Page 50: Cross-section of a bundle of single walled nanotubes Thess et al Nature

C60 molecules inside a SWNT Smith, Monthioux and Luzzi Nature

1998

2nm

Page 51: Cross-section of a bundle of single walled nanotubes Thess et al Nature

C60 molecules inside a SWNT Smith, Monthioux and Luzzi Nature

1998

2nm

Page 52: Cross-section of a bundle of single walled nanotubes Thess et al Nature

C60 molecules inside a SWNT Smith, Monthioux and Luzzi Nature

1998

2nm

Page 53: Cross-section of a bundle of single walled nanotubes Thess et al Nature
Page 54: Cross-section of a bundle of single walled nanotubes Thess et al Nature

General Research Strategy at Sussex

What fundamental information about nanotube formation can we deduce from their structures and the catalytic particles that create them?

Page 55: Cross-section of a bundle of single walled nanotubes Thess et al Nature

Suggested mechanism for the formation for single walled carbon nanotubes which are ca 1.4nm diameter