Publications


Télécharger ma thèse pleine d'images au format pdf / Download my thesis in pdf

 

 

[17] Growth Modes and Chiral Selectivity of Single-Walled Carbon Nanotubes.
M. He, Y. Magnin, H. Jiang, H. Amara, E. I. Kauppinen, A. Loiseau, C. Bichara
Nanoscale, 10, 6744 (2018)
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[16] Magnetism as indirect tool for carbon content assessment in nickel nanoparticles.
Y. Oumellal, Y. Magnin, A. Martinez de Yuso, J. M. Aguiar Hualde, H. Amara, V. Paul-Boncour, C. Matei Ghimbeu, A. Malouche, C. Bichara, R. Pellenq, C. Zlotea
J. Appl. Phys. 128, 213902 (2017)
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[15] Structural Properties of Double-Walled Carbon Nanotubes Driven by Mechanical Interlayer Coupling.
Ahmed Ghedjatti, Y. Magnin, F. Fossard, G. Wang, H. Amara, E. Flahaut, J-S Lauret, and A. Loiseau
ACS Nano, 11, 4840 (2017)
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[14] Probing the role of carbon solubility in transition metal catalyzing single-walled carbon nanotubes growth.
J-M. Aguiar-Hualde, Y. Magnin, H. Amara, C. Bichara
Carbon 120, 226 (2017)
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[13] Linking growth mode to lengths of single-walled carbon nanotubes.
M. He, Y. Magnin, H. Amara, H. Jiang, H. Cui, F. Fossard A. Castan, E. Kauppinen, A. Loiseau, C. Bichara
Carbon 113, 231 (2017)
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[12] Nuclear quantum effects on the thermal expansion coefficient of hexagonal boron nitride monolayer.

F. Calvo and Y. Magnin
Eur. Phys. J. B 89, 56 (2016)
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[11] Size dependent phase diagrams of Nickel-Carbon nanoparticles.
Y. Magnin, A. Zappelli, H. Amara, F. Ducastelle and C. Bichara
Phys. Rev. Lett. 115, 205502 (2015).
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[10] Interplay between Raman shift and thermal expansion in graphene: Temperature-dependent measurements and analysis of substrate corrections.
S. Linas, Y. Magnin, B. Poinsot, O. Boisron, G. D. Förster, V. Martinez, R. Fulcrand, F. Tournus, V. Dupuis, F. Rabilloud, L. Bardotti, Z. Han, D. Kalita, V. Bouchiat, and F. Calvo
Phys. Rev. B 91, 075426 (2015).
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[9] Thermal expansion of freestanding graphene: benchmarking semiempirical potentials.
Y. Magnin, G. D. Förster, F. Rabilloud, F. Calvo, A. Zappelli, C. Bichara
J. Phys.: Condens Matter 26, 185401 (2014).
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[8] Effective embedded-atom potential for metallic adsorbates on crystalline surfaces.
G. D. Förster, Y. Magnin, F. Rabilloud, F. Calvo
Model. Simul. Mater. Sci. Eng. 22, 035015 (2014).
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[7] Spin Resistivity in Magnetic Materials.
H. T. Diep, Yann Magnin and Danh-Tai Hoang.
Acta Phys. Pol. A 121, 985 (2012).
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[6] Monte Carlo Study of Magnetic Resistivity in Semiconducting MnTe.
Y. Magnin, H. T. Diep.
Phys. Rev. B 85, 184413 (2012).
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[5] Spin resistivity in the Frustrated J1-J2 Model.
Danh-Tai Hoang, Y. Magnin and H. T. Diep.
Mod. Phys. Lett. B 25, 937 (2011).
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[4] Monte Carlo Spin Transport in Antiferromagnetic Films: Application to MnTe.
K. Akabli, Y. Magnin, H. T. Diep and Isao Harada.
Phys. Rev. B 84, 024428 (2011).
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[3] Spin transport in magnetically ordered systems : effect of the lattice relaxation time.
Y. Magnin, Hoang D.-T., Diep H. T.
Mod. Phys. Lett. B 25, 1029 (2011).
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[2] Spin Resistivity in Frustrated Antiferromagnets.
Y. Magnin, K. Akabli, H. T. Diep and Isao Harada.
Phys. Rev. B 83, 144406 (2011).
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[1] Monte Carlo Study of the Spin Transport in Magnetic Materials.
Y. Magnin, K. Akabli,H. T. Diep and Isao Harada.
Comp. Mat. Sci. 49, S204 (2010).
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Conferences

 

[23] Workshop TOTAL
Annual meeting
Montreal, Canada, April 2018.
 Oral contribution  


[22] SFEC
French-Japanese Seminar on Carbon Materials.
Lyon, France, October 2017.
 Oral contribution  


[21] CESEP'17
7th International conference on carbon for energy storage and environment protection.
Lyon, France, October 2017.
 Oral contribution  


[20] SFEC: Colloque Francophone du Carbone.
Coutellerie Physique, les aciers carbone.

Saint Pierre d'Oléron, France, May 2017.
 Oral contribution  


[19] SFEC: Colloque Francophone du Carbone.
SWNT growth modes and selectivity studied by computer simulation & theoretical model

Saint Pierre d'Oléron, France, May 2017.
 Oral contribution 


[18] GDRI M2UN.
Multi-scale Materials Under the Nanoscope. Paris, France, December 2016.
 Oral contribution  


[17] Blender, atomistic data modelisation an introduction.
Blender, introduction à la modélisation d'images et d'animations de données atomistiques par l'exemple. Marseille, France, November 2016.
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 Oral contribution 


[16] GDR-I GNT.
Graphene & Nanotubes: Science and applications. Saint Pierre d'Oléron, France, October 2016.
 Oral contribution  


[15] SFEC: Colloque Francophone du Carbone.
Carqueiranne, France, May 2016.
 Oral contribution  


[14] WORKSHOP MITSI.

Ecole supérieure d'Art d'Aix-en-Provence, "Esthétique des nanosciences", Marseille, France, January 2016.
 Oral contribution 


[13] GDR CNRS 3532 MODMAT.

Ecole d'été "Modélisation des Matériaux, Istres, France, July 2015.
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 Oral contribution 


[12] Modeling metal-based nanoparticles: toward realistic environments.

CECAM-FR-GSO, CEMES, Toulouse, France, July 2015.
 Oral contribution 


[11] GFEC: Colloque Francophone du Carbone.
Les Karellis, France, Mai 2015.
 Oral contribution  


[10] Guadalupe Workshop VII: Nucleation & growth of SWCNT.
Rice University, Texas, USA, April 2015.
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[9] GDR CNRS 3532 MODMAT.
2ème réunion plénière, Lyon, France, Janvier 2015.
 Oral contribution  


[8] Graphene and Nanotubes: Science and Applications.
Annual meeting of the GDR-I GNT, Strasbourg, France, September 2014.
 Oral contribution 


[7] NT14: The Fifteenth International Conference on the Science and Application of Nanotubes.
University of Southern California, Los Angeles, USA, June 2014.
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[6] Frontier Research in Graphene-based Systems (Graphene & Co).
Cargese, Corsica, April 2014.
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[5] 7th International Conference on Theory of Atomic & Molecular Clusters (TAMC VII).
University of Birmingham, UK, September 2013.
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[4] Workshop on Coulomb Many-body Systems.
Shanghai Jiao Tong University, Shanghai, China, July 2012.


[3] The European Conference Physics of Magnetism 2011 (PM’11).
Institute of Molecular Physics, Poznan, Poland, June-July 2011.
 Oral contribution 


[2] International Conference on Frustrated Spin Systems, Cold Atoms and Nanomaterials.
Institute of Physics, Hanoi, Vietnam, July 2010.
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[1] 5th Conference of the Asian Consortium on Computational Materials Sciences (ACCMS-5).
Institute of Physics, Hanoi, Vietnam, September 2009.
 Oral contribution