Biomedical Engineering Reference
In-Depth Information
48.
Yang, P. (2003). Chemistry of nanostructured materials.
World Scientific Pub Co Inc.,
Hackensack, NJ.
49. Rao, C. N. R., Muller, A., Cheetham, A. K. (2004). The chemistry of nanomaterials: synthesis, prop-
erties and application (Vol. 1, pp. 255-284). Wiley-VCH Verlag GmbH & Co. KGaA.
50. Cao, G. Z. (2004). Nanostructures & nanomaterials: synthesis, properties & applications (pp.
110-168). World Scientific Publishing Co. Pte. Ltd., Singapore.
51. Wang, Z. L. (2003). Nanowaire and nanobelts: materials, properties and devices (Vol. 1 & 2). Kluwer
Academic Publishers, Norwell, MA.
52. Wagner, R. S., Ellis, W. C. (1964). Appl. Phys. Lett., 4, 89.
53. Wu, Y., Yang, P. (2001). Direct Observation of Vapor-Liquid-Solid Nanowire Growth. J. Am.
Chem. Soc. , 123, 3165-3166.
54. Zhang, Y., Wang, N., Gao, S., He, R., Miao, S., Liu, J., Zhu, J., Zhang, X. (2002). A Simple
Method to Synthesize Nanowires. Chem. Mater. , 14, 3564-3568.
55. Pan, Z. W., Dai, Z. R., Wang, Z. L. (2001). Nanobelts of SemiconductingOxides. Science , 291,
1947-1949.
56. Jin, C., Xiang, X., Jia, C., Liu, W., Cai, W., Yao, L., Li, L. (2004). Electrochemical Fabrication of
Large-Area, Ordered Bi 2 Te 3 Nanowire Arrays. J. Phys. Chem. B. , 108, 1844-1847.
57. Takahashi, K., Limmer, S. J., Wang, Y., Cao, G. Z. (2004). Synthesis and Electrochemical
Properties of Single-Crystal V 2 O 5
Nanorod Arrays by Template-Based Electrodeposition. J.
Phys. Chem. B , 108, 9795-9800.
58.
Cao, G. Z. (2004). Growth of Oxide Nanorod Arrays Through sol Electrophoretic Deposition.
J. Phys. Chem. B , 108, 19921-19931.
59.
Wu, B., Heidelberg, A., Boland, J. J. (2005). Mechanical Properties of Ultrahigh-Strength Gold
Nanowires. Nat. Mater. , 4, 525-529.
60.
Huynh, W. U., Dittmer, J. J., Alivisatos, P. (2002). Hybrid Nanorod-Polymer Solar Cells.
Science , 295, 2425-2427.
61.
Favier, F., Walter, E. C., Zach, M. P., Benter, T., Penner, R. M. (2001). Hydrogen Sensors and
Switches From Electrodeposited Palladium Mesowire Arrays. Science , 293, 2227-2231.
62.
Kong, J., Franklin, N. R., Zhou, C. W., Chapline, M. G., Peng, S., Cho, K., Dai, H. J. (2000).
Nanotube Molecular Wires as Chemical Sensors. Science , 287(5453), 622-625.
63.
Someya, T., Small, J., Kim, P., Nuckolls, C., Yardley, J. T. (2003). Alcohol Vapor Sensors Based
on Single-Walled Carbon Nanotube Field Effect Transistors. Nano Lett., 3, 1421-1423.
64.
Baughman, R. H., Zakhidow, A. A., de Heer, W. A. (2002). Carbon Nanotubes—The Route
Toward Applications. Science, 297(2), 787-792.
65.
Cui, Y., Wei, Q., Park, H., Lieber, C. M. (2001). Nanowire Nanosensors for Highly Sensitive
and Selective Detection of Biological and Chemical Species. Science, 293(17), 1289-1292.
66.
Wang, J. (2005). Carbon-Nanotube Based Electrochemical Biosensors: A Review.
Electroanalysis, 17(1), 7-14.
67.
Kohli, P., Wirtz, M., Martin, C. R. (2004). Nanotube Membrane Based Biosensors.
Electroanalysis, 16(1-2), 9-18.
68.
Chen, R. J., Bangsaruntip, S., Drouvalakis, K. A., Kam, N. W. S., Shim, M., Li, Y., Kim, W., Utz,
P. J., Dai, H. (2003). Noncovalent Functionalization of Carbon Nanotubes for Highly Specific
Electronic Biosensors. Proc. Natl. Acad. Sci. U.S.A., 100, 4984-4989.
69.
Star, A., Han, T.-R., Joshi, V., Stetter, J. R. (2004). Sensing With Nafion Coated Carbon
Nanotube Field-Effect Transistors. Electroanalysis, 16, 1-2.
70.
Burda, C., Chen, X., Narayanan, R., El-Sayed, M. A. (2005). Chemistry and Properties of
Nanocrystals of Different Shapes. Chem. Rev ., 105, 1025-1102.
71.
Lee, C.-S., Baker, S. E., Marcus, M. S., Yang, W., Eriksson, M. A., Hamers, R. J. (2004).
Electrically Addressable Biomolecular Functionalization of Carbon Nanotube and Carbon
Nanofiber Electrodes. Nano Lett., 4(9), 1713-1716.
72.
Lin, Y., Taylor, S., Li, H., Fernando, K. A. S., Qu, L., Wang, W., Gu, L., Zhou, B., Sun, Y.-P.
(2004). Advances Toward Bioapplications of Carbon Nanotubes. J. Mater. Chem., 14, 527-541.
73.
Hirsch, A. (2002). Functionalization of Single-Walled Carbon Nanotubes. Angew. Chem. Int.
Ed., 11, 1853-1859.
74.
Balasubramanian, K., Burghard, M. (2005). Chemically Functionalized Carbon Nanotubes.
Small, 1(2), 180-192.
Search WWH ::




Custom Search