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nanoparticles 11 61.46.-w Nanoscale materials 8 61.46.-w Structure of nanoscale materials 6 PACS. 61.46.+w Clusters 3 and nanocrystalline materials 3 nanotubes 3 61.46.+w 2 61.48.De Structure of carbon nanotubes 2 71.15.Mb Density functional theory 2 73.22.-f Electronic structure of nanoscale materials: clusters 2 and nanocrystals 2 boron nanotubes 2 gradient and other corrections 2 local density approximation 2 07.35.+k High-pressure apparatus 1 31.15.xv Molecular dynamics and other numerical methods 1 44.10.+i Heat conduction – 1 61.05.cp X-ray diffraction 1 61.10.Nz X-ray diffraction 1 61.12.Bt Theories of diffraction and scattering 1 61.12.Ld neutron diffraction. 1 61.46.+w Clusters 1 61.46.-w 1 61.66.Dk 1 61.72.Ji Point defects (vacancies 1 61.80.-x Physical radiation effects 1 63.20.dk First-principles theory 1 63.22.+m Phonons or vibrational states in low-dimensional structures aaand nanoscale materials 1 63.22.+m Phonons or vibrational states in low-dimensional structures and nanoscale materials 1 64.75.+g Solubility 1 65.40.-b Thermal properties of crystalline solids 1 65.80.+n Thermal properties of small particles 1 66.30.Pa Diffusion in nanoscale solids 1 68.08.Bc Wetting 1 68.65.+g 1 68.65.+g Low-dimensional structures (superlattices 1 68.65.-k Low-dimensional 1 71.55.Ak 1 72.15.Eb 1 73.23.-b Electronic transport in mesoscopic systems 1
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Undetermined 26
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Article 26
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Undetermined 26
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Fort, A. 2 Villain, J. 2 Xiao, Y. 2 Zhang, Y. 2 Adam, E. 1 BOUMRAR, H. 1 Barriquand, N. 1 Belhadi, M. 1 Bendiab, N. 1 Benyagoub, A. 1 Cambedouzou, J. 1 Canut, B. 1 Castro, C. 1 Chang, S. 1 Charlier, J.-C. 1 Chuang, Y. 1 Cuccoli, A. 1 Datchi, F. 1 Declerck, X. 1 Delaplane, R. G. 1 Deng, H. 1 Dieuleveult, P. De 1 Dubay, O. 1 Dubois, S. M.-M. 1 Echeverría, I. 1 Faraci, G. 1 Fedorov, A. S. 1 García-Vidal, F.J. 1 Golosovsky, I. V. 1 Guo, Hong 1 Hardy, J. 1 Heilmann, A. 1 Heresanu, V. 1 Hu, W. 1 Huang, Y. 1 Khater, A. 1 Kibalin, Y. A. 1 Kuzmany, H. 1 Landa, G. 1 Launois, P. 1
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The European Physical Journal B - Condensed Matter and Complex Systems 24 Surface Review and Letters (SRL) 2
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RePEc 26
Showing 1 - 10 of 26
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Electronic properties and quantum transport in Graphene-based nanostructures
Dubois, S. M.-M.; Zanolli, Z.; Declerck, X.; Charlier, J.-C. - In: The European Physical Journal B - Condensed Matter and … 72 (2009) 1, pp. 1-24
Persistent link: https://www.econbiz.de/10009279998
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X-ray diffraction study of the evolution of Fe-filled multiwalled carbon nanotubes under pressure
Cambedouzou, J.; Heresanu, V.; Castro, C.; Pinault, M.; … - In: The European Physical Journal B - Condensed Matter and … 72 (2009) 1, pp. 145-151
Persistent link: https://www.econbiz.de/10009280578
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Thermoactivated transport of molecules H<Subscript>2</Subscript> in narrow single-wall carbon nanotubes
Fedorov, A. S.; Sadreev, A. F. - In: The European Physical Journal B - Condensed Matter and … 69 (2009) 3, pp. 363-368
Persistent link: https://www.econbiz.de/10009281414
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MORPHOLOGY AND ELECTRICAL RESISTIVITY OF AuCu NANOFILM ALLOYS
MALDONADO, R. D.; OLIVA, A. I. - In: Surface Review and Letters (SRL) 15 (2008) 06, pp. 881-888
Au/Cu thin films (33–320 nm thickness) were deposited by thermal evaporation on p-type silicon (100) substrates. Two groups of these bimaterial films were alloyed into a vacuum oven by diffusion. The first group was prepared with 24% Au atomic concentration (i.e. 33, 96, 158, 224, and 320 nm...
Persistent link: https://www.econbiz.de/10004971844
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Application of a hybrid quantum mechanics and empirical moleculardynamics multiscale method to carbon nanotubes
Zhang, X.; Wang, C.-Y. - In: The European Physical Journal B - Condensed Matter and … 65 (2008) 4, pp. 515-523
We present a hybrid multiscale method for coupling quantum mechanicsto empirical molecular dynamics, which is named as hybrid energydensity method. In this approach, quantum mechanical treatment isspatially confined to a small region, surrounded by a largermolecular mechanical region. A unified...
Persistent link: https://www.econbiz.de/10009281230
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Surface and quantum-size effects on the specific heat of layered and nonlayered nanotubes
Xiao, Y.; Yan, X. H.; Wang, D. L.; Zhang, Y. - In: The European Physical Journal B - Condensed Matter and … 66 (2008) 4, pp. 433-438
Persistent link: https://www.econbiz.de/10009281650
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Strong water repellency effect on SiO<Subscript>2</Subscript> films processed at a nanometric scale
Ramos, S. M.M.; Benyagoub, A.; Canut, B.; Dieuleveult, P. De - In: The European Physical Journal B - Condensed Matter and … 62 (2008) 4, pp. 405-410
The present study deals with the creation of nano-rough surfaces with stable and controlled high hydrophobicity. These surfaces were obtained by combining the ion track etching technique with a simple functionalization by grafting perfluoroctyltrichlorosilane (PFOTS) molecules. Surface...
Persistent link: https://www.econbiz.de/10009281790
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Lattice dynamics investigations of SiGe core-shell nanowires
Zhang, Y.; Xiao, Y. - In: The European Physical Journal B - Condensed Matter and … 63 (2008) 4, pp. 425-430
Persistent link: https://www.econbiz.de/10009282483
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Transport properties of AB-stacked bilayer graphene nanoribbons in an electric field
Li, T.; Huang, Y.; Chang, S.; Chuang, Y.; Lin, M. - In: The European Physical Journal B - Condensed Matter and … 64 (2008) 1, pp. 73-80
Persistent link: https://www.econbiz.de/10009282748
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Electron transport in double-walled carbon nanotubes
Li, T. S.; Lee, C. H.; Lin, M. F. - In: The European Physical Journal B - Condensed Matter and … 60 (2007) 1, pp. 45-50
The transport properties of finite length double-walled carbon nanotubes subject to the influences of a transverse electric field and a magnetic field with varying polar angles are investigated theoretically. The electrical conductance, thermal conductance and Peltier coefficient dependences on...
Persistent link: https://www.econbiz.de/10009282372
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