
Sorbonne-Univ./CNRS
Laboratoire de chimie de la matière condensée de Paris
Tour 44-43 / 4ème étage
Case courrier 174
4, Place Jussieu
75005 PARIS
France
Jérôme CHARLIAC
Assistant(e) Ingénieur(e)
MHP
jerome.charliac@-Code a retirer pour éviter le SPAM-sorbonne-universite.fr
bureau 43-44.402

Article dans une revue
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- Cassiano Tecchio, Benjamin Cariteau, Corentin Le Houedec, Guillaume Bois, Elie Saikali, et al.. Microlayer evaporation during bubble growth in nucleate boiling. International Journal of Heat and Mass Transfer, 2024, 231, pp.125860. ⟨10.1016/j.ijheatmasstransfer.2024.125860⟩. ⟨cea-04649101⟩
- Accès au bibtex
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- ref_biblio
- Cassiano Tecchio, Xiaolong Zhang, Benjamin Cariteau, Gilbert Zalczer, Pere Roca I Cabarrocas, et al.. Microlayer in nucleate boiling seen as Landau-Levich film with dewetting and evaporation. Journal of Fluid Mechanics, 2024, 989, pp.A4. ⟨10.1017/jfm.2024.488⟩. ⟨cea-04674222⟩
- Accès au texte intégral et bibtex
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- ref_biblio
- Cassiano Tecchio, Iacopo Regoli, Benjamin Cariteau, Gilbert Zalczer, Pere Roca I Cabarrocas, et al.. Effect of an artificial cavity on the microlayer and contact line dynamics during bubble growth in nucleate boiling. Journal of Physics: Conference Series, 2024, Journal of Physics: Conference Series, 2766, pp.012121. ⟨10.1088/1742-6596/2766/1/012121⟩. ⟨cea-04637928⟩
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- ref_biblio
- Ralph El Hage, Vincent Humbert, Victor Rouco, Gabriel Sánchez-Santolino, Aurelien Lagarrigue, et al.. Bimodal ionic photomemristor based on a high-temperature oxide superconductor/semiconductor junction. Nature Communications, 2023, 14 (1), pp.3010. ⟨10.1038/s41467-023-38608-0⟩. ⟨hal-04284618⟩
- Accès au texte intégral et bibtex
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- ref_biblio
- Laurence Bodelot, Luka Pavic, Simon Hallais, Jérôme Charliac, Bérengère Lebental. Aggregate-driven reconfigurations of carbon nanotubes in thin networks under strain: in-situ characterization. Scientific Reports, 2019, 11p. ⟨10.1038/s41598-019-41989-2⟩. ⟨hal-03241026⟩
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- ref_biblio
- P. Leempoel, P. Descamps, T. Kervyn de Meerendré, J. Charliac, Pere Roca I Cabarrocas, et al.. Distributed Electron Cyclotron Resonance plasma: a technology for large area deposition of device quality a-Si:H at very high rate. Thin Solid Films, 2008, 516, pp.6853. ⟨hal-00350890⟩
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- ref_biblio
- P. Roca I Cabarrocas, Pavel Bulkin, D. Daineka, T. H. Dao, P. Leempoel, et al.. Advances in the deposition of microcrystalline silicon at high rate by distributed electron cyclotron resonance. Thin Solid Films, 2008, pp.6834-6838. ⟨hal-00915445⟩
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Communication dans un congrès
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- Cassiano Tecchio, Xiaolong Zhang, B. Cariteau, Gilbert Zalczer, Pere Roca I Cabarrocas, et al.. Microlayer dynamics at bubble growth in boiling. HEFAT-ATE 2022 - 16th International. Conference on Heat Transfer Fluid Mechanics and Thermodynamics, Aug 2022, Virtual, South Africa. pp.624-629. ⟨cea-04506433⟩
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- ref_biblio
- Laurence Bodelot, Jérôme Charliac, Simon Hallais, Bérengère Lebental, Luka Pavic, et al.. In-situ investigation of local motion mechanisms in carbon nanotubes strain sensors. C'NANO 2017, The Nanoscience Meeting, Dec 2017, Lyon, France. 26p. ⟨hal-01812099⟩
- Accès au bibtex
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- ref_biblio
- P. Leempoel, P. Descamps, T. Kervyn de Meerenedre, J. Charliac, Pere Roca I Cabarrocas, et al.. Distributed Electron Cyclotron Resonance plasma: a technology for large area deposition of device quality a-Si:H at very high rate. E-MRS 2007 Spring Meeting, 2007, France. ⟨hal-00322305⟩
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Poster de conférence
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- Jérôme Charliac, Laurence Rozes. Les plateaux techniques Matériaux. Ecole Résidentielle Interdisciplinaire en Nanosciences et Nanotechnologies, Jul 2023, Saint Jacut de la Mer, France. ⟨hal-04754126⟩
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