Biomedical Engineering Reference
In-Depth Information
Another separating procedure consisted in the density gradient
ultracentrifugation, in which the obtained fractions were characterised by
aberration-corrected TEM; 226 results showed that armchair ( n , n ) and chiral
( n , n - 3) SWCNTs with large chiral angles (>20°) were the dominant metallic
nanotubes, while no particular preference was detected for semimetallic
tubes. This work was performed in collaboration with Prof. Iijima, thus
substantiating his undiscussed leadership in this ield of research.
References
1. Ajayan, P. M. (1999) Nanotubes from carbon, Chem. Rev. , 99 , 1787-1800.
2. Jacoby, M. (2002) Nanoscale electronics, Chem. Eng. News , 80 , 38-43.
3. Mitchell, D. T., Lee, S. B., Troin, L., Li, N., Nevanen, T. K., Soderlund, H., and
Martin, C. R. (2002) Smart nanotubes for bioseparations and biocatalysis, J.
Am. Chem. Soc. , 124 , 11864-11865.
4. Lee, S. B., Mitchell, D. T., Troin, L., Nevanen, T. K., Soderlund, H., and Martin,
C. R. (2002) Antibody-based bio/nanotube membranes for enantiomeric drug
separation, Science , 296 , 2198-2200.
5. Karousis, N., Tagmatarchis, N., Tasis, D. (2010) Current Progress on the
Chemical Modiication of Carbon Nanotubes. Chem. Rev. 110 , 5366-5397.
6. Holzinger, M., Vostrowsky, O., Hirsch, A., Hennrich, F., Kappes, M., Weiss, R., and
Jellen, F. (2001) Sidewall functionalization of carbon nanotubes, Angew. Chem.
Int. Ed. , 40 , 4002-4005.
7. Holzinger, M., Abraham, J., Whelan, P., Graupner, R., Ley, L., Hennrich, F., Kappes,
M., and Hirsch, A. (2003) Functionalization of single-walled carbon nanotubes
with (R-)oxycarbonyl nitrenes, J. Am. Chem. Soc. , 125 , 8566-8580.
8. Holzinger, M., Steinmetz, J., Samaille, D., Glerup, M., Paillet, M., Bernier, P., Ley, L.,
and Graupner, R. (2004) [2+1] cycloaddition for cross-linking SWNTs, Carbon ,
42 , 941-947.
9. Dyke, C. A., and Tour, J. M. (2003) Solvent-free functionalization of carbon
nanotubes, J. Am. Chem. Soc. , 125 , 1156-1157.
10. Avouris, P. (2007) Electronics with carbon nanotubes, Phys. World , 20 , 40-45.
11. Avouris, P., Chen, Z., and Perebeinos, V. (2007) Carbon-based electronics, Nat.
Nanotechnol. , 2 (10), 605-615.
12. Landauer, R. (1988) Spatial variation of currents and ields due to localized
scatterers in metallic conduction, IBM J. Res. Dev. , 32 , 306.
13. Buttiker, M. (1988) Symmetry of electrical conduction, IBM J. Res. Dev. ,
32 , 317.
14.
Ilani, S., Donev, L. A. K., Kindermann, M., and McEuen, P. L. (2006) Measurement
of the quantum capacitance of interacting electrons in carbon nanotubes, Nat.
Phys. , 2 , 687-691.
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