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Published byDarren Gibbs Modified over 6 years ago
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Internally sealed compartments
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BN nanotube and Ta/B/N catalytic particle
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BN nanotube and Ta/B/N catalytic particle
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SSingle wall nanotubes 1.4nm diam
Thess et al Nature
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1.4nm
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Tip of MW-WS2-NT
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Ta-B-N crystalline catalytic particle
Inflation zone
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SiO2 coated cobalt particle
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An apparently almost perfect MW MS2 NT
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TEM image of NCNT bundle
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BN nanotube and Ta/B/N catalytic particle
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Ta/B/N crystalline catalytic particles
BN nanotubes
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BN nanotube produced in an arc using a BN/Ta cathode
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Ta-B-N crystalline catalytic particle
Amorphous BN material Enters into the crystalline phase
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Ta-B-N crystalline catalytic particle
Segregation zone
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Ta-B-N crystalline catalytic particle
Inflation zone
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Ta-B-N crystalline catalytic particle
3-wall BN nanotube
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An apparently almost perfect MW MS2 NT
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SiO2 coated cobalt particle
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Iron particle catalysed MW-CNT
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Nitrogen Doped CNTs
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A suggested mechanism of formation for single walled carbon nanotubes
They are formed by laser ablation/deposition of graphite in the presence Ni/Co The diameter is fairly uniform ca 1.4nm The conditions are the same as for the formation of C60 so it is present in the system
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General Research Strategy at Sussex
What fundamental information about nanotube formation can we deduce from their structures and the catalytic particles that create them?
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SWNTs Possible Formation mechanism catalyst - C60 covered in Ni and Co Explains 1.4nm diameter observed
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Ferrocene interplanar distance 3.4 nm
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1nm Cross-sectional view of a bundle of single walled nanotubes with C60 molecules inside (Thess et al)
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1nm C60 molecules inside a single walled nanotube
Smith, Monthioux and Luzzi Nature 1998
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