Read e-book online Nanoscale Phenomena: Basic Science to Device Applications PDF

By Morinobu Endo (auth.), Zikang Tang, Ping Sheng (eds.)

ISBN-10: 0387730478

ISBN-13: 9780387730479

ISBN-10: 0387730486

ISBN-13: 9780387730486

Nanotechnology is the results of the ongoing technological development towards gadget miniaturization and the characterization, manipulation, and effective keep watch over of constitution and serve as at diminishing size scales. a wide type of nanoscale fabrics may be reliable even if they're faraway from the lowest-energy thermodynamic nation, and lots of own novel homes unimaginable in bulk. those traits are supported by means of the expanding sophistication of characterization and fabrication instruments resembling the scanning tunneling microscope and the transmission electron microscope, which enable the answer and manipulation of unmarried atoms and molecules. Nanoscale Phenomena: simple technological know-how to gadget Applications offers chosen lectures from the 3rd Workshop of the Croucher complex learn Institute on Nano technological know-how and expertise, and showcases contributions from world-renowned researchers. Chapters fall into 4 significant different types: Nanostructured Carbon and its functions, Quantum Dots and Molecular Spintronics, Nanomaterials layout and Synthesis, and Molecular Electronics.

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Extra resources for Nanoscale Phenomena: Basic Science to Device Applications

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155414. Brown, S. D. , Dresselhaus, M. S. , 2001b, Observation of the D-band feature in the Raman spectra of carbon nanotubes. Physical Review B, 64, pp. 073403. Cairns, D. R. and Crawford, G. , 2005, Electromechanical properties of transparent conducting substrates for flexible electronic displays. Proceedings of the IEEE, 93, pp. 1451–1458. , Wong, E. W. and Lieber, C. , 1996, Probing electrical transport in nanomaterials: conductivity of individual carbon nanotubes. Science, 272, pp. 523–526.

2002). , 1993). , 2000). 36 W. -M. Cheng Fig. 85 nm. 26 nm. A Lorentzian line shape was used in the fitting process. , 2006) Therefore, it is quite important to identify the atomic correlation between the two constituent tubes of a DWNT and to determine its electronic structure for electronic applications. , the double resonance mechanism, their Raman profiles are very sensitive to the electronic structure of the nanotubes. Therefore, we will try to probe the atomic correlation of the two constituent tubes of DWNTs by analyzing their D-band and G -band features.

Dresselhaus, G. and Dresselhaus1, M. , 2001, Structural (n, m) determination of isolated single-wall carbon nanotubes by resonant Raman scattering. Physical Review Letters, 86, pp. 1118–1121. , Gorbunov, A. , Goldem, M. S. , 1999, Diameter grouping in bulk samples of single-walled carbon nanotubes from optical absorption spectroscopy. Applied Physics Letters, 75, pp. 2217–2219. , Dettlaff, U. , 2003, Characterization of carbon nanotubes by optical spectra. Synthetic Metals, 135–136, pp. 755–756.

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Nanoscale Phenomena: Basic Science to Device Applications by Morinobu Endo (auth.), Zikang Tang, Ping Sheng (eds.)


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