UID:
almahu_9949697636802882
Format:
1 online resource (458 p.)
Edition:
Second edition.
ISBN:
0-08-098268-9
Note:
Description based upon print version of record.
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Chapter 3 - Differentiation of Carbon Nanotubes with Different Chirality3.1 - Introduction and brief history of differentiation of single-walled carbon nanotubes (SWCNTs) with different electroni...; 3.2 - Differentiation of densities of SWCNTs with different chiralities; 3.2.1 - Typical procedure to sort metallic and semiconducting types of SWCNTs by DGU; 3.2.2 - Sorting mechanisms in DGU; 3.2.2.1 - The types of surfactants used for dispersion and separation; 3.2.2.2 - The type of gradient medium and the temperature
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4.2.1.1 - The kinetics of the graphene growth process with respect to the process parameters4.2.1.2 - The nucleation of graphene with respect to the process parameters; 4.2.1.3 - The role of hydrogen in the graphene growth; 4.2.2 - Substrate material; 4.2.2.1 - Copper; 4.2.2.2 - Nickel and other metals; 4.2.2.3 - Non-metallic substrates; 4.3 - Toward the large domain size; 4.4 - Bilayer graphene (BLG) growth; 4.5 - Graphene transfer; 4.5.1 - Choice of the protective layer; 4.5.2 - The effect of target substrates on graphene quality; 4.5.3 - Direct transfer of graphene onto target substrates
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4.5.4 - Non-destructive exfoliation transfer process4.6 - Concluding remarks; References; Chapter 5 - Optical Properties of Carbon Nanotubes; 5.1 - Introduction; 5.2 - Exciton energy calculation; 5.2.1 - Many-body effect in an exciton; 5.2.2 - Dark and bright exciton states; 5.2.3 - Bethe-Salpeter equation; 5.3 - The calculated exciton energies; 5.3.1 - The exciton Kataura plot; 5.4 - Exciton environmental effect; 5.5 - Exciton effect in Raman spectroscopy; 5.5.1 - (n,m) assignment from resonance Raman spectra; 5.5.2 - Exciton-exciton interaction and electronic Raman spectra; 5.6 - Summary
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Acknowledgements
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English
Additional Edition:
ISBN 0-08-098232-8
Additional Edition:
ISBN 1-306-97715-0
Language:
English