Y. Atmane, L. Sicard, A. Lamouri, J. Pinson, M. Sicard et al., « Functionalization of Aluminum Nanoparticles Using a Combination of Aryl Diazonium Salt Chemistry and Iniferter Method, The Journal of Physical Chemistry C, vol.117, issue.49, pp.26000-26006, 2013.

H. Basti, . Ben-tahar, . Smiri, M. Herbst, . Vaulay et al.,

, « Catechol derivatives-coated Fe3O4 and ?-Fe2O3 nanoparticles as potential MRI contrast agents, Journal of colloid and interface science, vol.341, issue.2, pp.248-54

D. Belanger and J. Pinson, Electrografting: a powerful method for surface modification, Chem. Soc. Rev, vol.40, issue.7, pp.3995-4048, 2011.

K. J. Bell, P. A. Brooksby, M. I. Polson, and A. J. Downard, « Evidence for Covalent Bonding of Aryl Groups to MnO 2 Nanorods from Diazonium-Based Grafting, Chem. Commun, vol.50, issue.89, pp.13687-90, 2014.

S. Benny, « High temperature water gas shift catalysts: a computer modelling study, 2010.

W. H. Binder, H. C. Et, and . Weinstabl, « Surface-Modified Superparamagnetic Iron-Oxide Nanoparticles, Monatshefte für Chemie-Chemical Monthly, vol.138, issue.4, pp.315-335, 2007.

M. Borasio, O. Rodríguez-de-la-fuente, G. Rupprechter, and H. Freund,

, « In situ studies of methanol decomposition and oxidation on Pd (111) by PM-IRAS and XPS spectroscopy, vol.109, pp.17791-94

M. Chehimi and . Mehdi, Aryl Diazonium Salts: New Coupling Agents and Surface Science, 2012.

S. Chen, . Et-weimin, and . Liu, « Oleic acid capped PbS nanoparticles: synthesis, characterization and tribological properties, Materials chemistry and physics, vol.98, issue.1, pp.183-89, 2006.

X. Chen, M. Chockalingam, G. Liu, E. Luais, A. L. Gui et al., « A Molecule with Dual Functionality 4-Aminophenylmethylphosphonic Acid: A Comparison Between Layers Formed on Indium Tin Oxide by In Situ Generation of an Aryl Diazonium Salt or by Self-Assembly of the Phosphonic Acid, Electroanalysis, vol.23, issue.11, pp.2633-2675, 2011.

B. -. Chiou, Y. Hao, C. Tsai, and . Wang, « Phenothiazine-Modified Electrodes: A Useful Platform for Protein Adsorption Study, Langmuir, vol.30, issue.6, pp.1550-56, 2014.

D. Chung, S. Oh, S. Komathi, A. Iyengar-gopalan, K. Lee et al., « One-step modification of various electrode surfaces using diazonium salt compounds and the application of this technology to electrochemical DNA (E-DNA) sensors », Electrochimica Acta, vol.76, pp.394-403, 2012.

C. Corot, P. Robert, J. Idée, and M. Port, « Recent advances in iron oxide nanocrystal technology for medical imaging, Advanced drug delivery reviews, vol.58, pp.1471-1504, 2006.

B. Cullity, C. Dennis, and . Graham, Introduction to magnetic materials, 2011.

C. M. Fang, M. A. Van-huis, and H. W. Zandbergen, « Structural, Electronic, and Magnetic Properties of Iron Carbide Fe7C3 Phases from First-Principles Theory, Physical Review B, vol.80, issue.22, 2009.

Y. Fleger, . Mastai, . Rosenbluh, D. H. Et, and . Dressler, « SERS as a probe for adsorbate orientation on silver nanoclusters, Journal of Raman Spectroscopy, vol.40, issue.11, pp.1572-77, 2009.

J. Fouineau, K. Brymora, L. Ourry, F. Mammeri, N. Yaacoub et al., « Synthesis, Mössbauer Characterization, and ab initio Modelling of Iron Oxide Nanoparticles of Medical Interest Functionalized by Dopamine, The Journal of Physical Chemistry C, p.130605124650003, 2013.

J. Gao, H. Gu, B. Et, and . Xu, Multifunctional Magnetic Nanoparticles: Design, Synthesis, and Biomedical Applications, vol.42, pp.1097-1107, 2009.

P. Giannozzi, S. Baroni, N. Bonini, M. Calandra, R. Car et al., « QUANTUM ESPRESSO: a modular and open-source software project for quantum simulations of materials », Journal of Physics: Condensed Matter, vol.21, issue.39, p.395502, 2009.

A. A. Golosova, C. M. Papadakis, and R. Jordan, « Chemical functionalization of carbon nanotubes with aryl diazonium salts, Symposium QQ-Carbon Functional Interfaces, vol.1362, 2011.

R. Grau-crespo, Y. Asmaa, I. Al-baitai, . Saadoune, N. Et et al., « Vacancy ordering and electronic structure of ?-Fe 2 O 3 (maghemite): a theoretical investigation, Journal of Physics: Condensed Matter, vol.22, issue.25, p.255401, 2010.

N. Griffete, F. Herbst, and J. Pinson, Souad Ammar, et Claire Mangeney. 2011. « Preparation of water-soluble magnetic nanocrystals using aryl diazonium salt chemistry », Journal of the American Chemical Society, vol.133, issue.6, pp.1646-1695

V. Guillaume, P. Thominot, F. Coat, A. Mari, and C. Lapinte, « Investigation of the iron-carbon bonding for alkyl, alkynyl, carbene, vinylidene, and allenylidene complexes using< sup> 57</sup> Fe Mössbauer spectroscopy, Journal of organometallic chemistry, vol.565, issue.1, pp.75-80, 1998.

A. Hanini, A. Schmitt, K. Kacem, F. Chau, S. Ammar et al.,

, Evaluation of iron oxide nanoparticle biocompatibility, International Journal of Nanomedicine, vol.6, p.787

A. Haque, . Jiaul, . Et-kyuwon, and . Kim, Aldehyde-functionalized benzenediazonium cation for multiprobe immobilization on microelectrode array surfaces, vol.27, pp.882-86, 2011.

A. F. Hegarty, « Kinetics and mechanisms of reactions involving diazonium and diazo groups, Diazonium and Diazo Groups, pp.511-91, 1978.

B. L. Hurley and . Et-richard-l-mccreery, « Covalent bonding of organic molecules to Cu and Al alloy 2024 T3 surfaces via diazonium ion reduction, Journal of the Electrochemical Society, vol.151, issue.5, pp.252-59, 2004.

. Jiang, . De-en, G. Bobby, S. Sumpter, and . Dai, « Structure and bonding between an aryl group and metal surfaces, Journal of the American Chemical Society, vol.128, issue.18, pp.6030-6061, 2006.

J. Jørgensen, L. Mosegaard, L. E. Thomsen, T. R. Jensen, and C. Et-jonathan,

. Hanson, « Formation of ?-Fe2O3 Nanoparticles and Vacancy Ordering: An in Situ X-Ray Powder Diffraction Study, Journal of Solid State Chemistry, vol.180, issue.1, pp.180-85, 2007.

G. Kataby, . Ulman, . Prozorov, and . Gedanken, « Coating of amorphous iron nanoparticles by long-chain alcohols, Langmuir, vol.14, issue.7, pp.1512-1527, 1998.

K. M. Krishnan, Biomedical nanomagnetics: a spin through possibilities in imaging, diagnostics, and therapy ». Magnetics, vol.46, pp.2523-58, 2010.

F. Lamberti, S. Agnoli, L. Brigo, G. Granozzi, M. Giomo et al., « Surface Functionalization of Fluorine-Doped Tin Oxide Samples through Electrochemical Grafting, ACS applied materials & interfaces, vol.5, issue.24, pp.12887-94, 2013.

L. Laurentius, R. Stanislav, S. Stoyanov, A. Gusarov, R. Kovalenko et al., Diazonium-derived aryl films on gold nanoparticles, vol.5, pp.4219-4246, 2011.

S. Laurent, S. Dutz, O. Urs, . Häfeli, M. Et et al., Magnetic fluid hyperthermia: focus on superparamagnetic iron oxide nanoparticles, vol.166, pp.8-23, 2011.

, 2011b. « Magnetic fluid hyperthermia: focus on superparamagnetic iron oxide nanoparticles, vol.166, pp.8-23

M. Lévy, C. Wilhelm, J. Siaugue, and O. Horner,

F. Gazeau, « Magnetically induced hyperthermia: size-dependent heating power of ?-Fe 2 O 3 nanoparticles, Journal of Physics: Condensed Matter, vol.20, issue.20, p.204133, 2008.

J. Lu, J. Fan, R. Xu, S. Roy, and N. Ali,

, Alkyl Sulfonate/alcohol-Protected ?-Fe2O3 Nanocrystals with Narrow Size Distributions, vol.258, pp.427-458

. Mahouche-chergui, S. Samia, C. Gam-derouich, . Mangeney, M. Et-mohamed et al.,

, Aryl diazonium salts: a new class of coupling agents for bonding polymers, biomacromolecules and nanoparticles to surfaces, Chemical Society Reviews, vol.40, issue.7, pp.4143-66

S. Mahouche, N. Mekni, L. Abbassi, P. Lang, C. Perruchot et al.,

, « Tandem diazonium salt electroreduction and click chemistry as a novel, efficient route for grafting macromolecules to gold surface, Surface Science, vol.603, issue.21, pp.3205-3216

S. Maldonado, T. J. Smith, D. Ryan, S. Williams, and . Morin,

J. Keith and . Stevenson, « Surface modification of indium tin oxide via electrochemical reduction of aryldiazonium cations, Langmuir, vol.22, issue.6, pp.2884-91, 2006.

T. Matrab, J. Chancolon, M. Mayne-l&apos;hermite, J. Rouzaud, G. Deniau et al., « Atom transfer radical polymerization (ATRP) initiated by aryl diazonium salts: a new route for surface modification of multiwalled carbon nanotubes by tethered polymer chains, Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol.287, issue.1, pp.217-238, 2006.

T. Matrab, M. Save, B. Charleux, J. Pinson, E. Cabet-deliry et al., « Grafting densely-packed poly-n n-butyl methacrylate chains from an iron substrate by aryl diazonium surface-initiated ATRP: XPS monitoring, Surface science, vol.601, issue.11, pp.2357-66, 2007.

A. Merson, T. Dittrich, Y. Zidon, . Rappich, Y. Et et al., « Charge transfer from TiO2 into adsorbed benzene diazonium compounds, Applied physics letters, vol.85, issue.6, pp.1075-76, 2004.

F. Mirkhalaf, T. J. Mason, J. David, V. Morgan, and . Saez, « Frequency effects on the surface coverage of nitrophenyl films ultrasonically grafted onto indium tin oxide, Langmuir, vol.27, issue.5, pp.1853-58, 2011.

S. Mornet, S. Vasseur, and F. Grasset, « Magnetic nanoparticle design for medical diagnosis and therapy, Journal of Materials Chemistry, vol.14, issue.14, pp.2161-75, 2004.

A. Nilsson and L. G. Moody-pettersson, « Chemical bonding on surfaces probed by X-ray emission spectroscopy and density functional theory, Surface Science Reports, vol.55, issue.2, pp.49-167, 2004.

R. Pazo-llorente, C. Bravo-diaz, and E. Gonzalez-romero, « ph effects on ethanolysis of some arenediazonium ions: Evidence for homolytic dediazoniation proceeding through formation of transient diazo ethers, European Journal of Organic Chemistry, issue.15, pp.3221-3247, 2004.

J. P. Perdew, K. Burke, and M. Ernzerhof, « Generalized gradient approximation made simple, Physical review letters, vol.77, issue.18, pp.3865-68, 1996.

J. P. Perdew, Y. Et, and . Wang, « Accurate and simple analytic representation of the electron-gas correlation energy, Physical Review B, vol.45, issue.23, p.13244, 1992.

F. I. Podvorica, F. Kanoufi, J. Pinson, C. Et, and . Combellas, Spontaneous grafting of diazoates on metals, vol.54, pp.2164-70, 2009.

T. Risse, . Carlsson, . Bäumer, . Klüner, H. Et et al., « Using IR intensities as a probe for studying the surface chemical bond, Surface science, vol.546, issue.2, pp.829-864, 2003.

J. Rockenberger and E. C. Scher, « A new nonhydrolytic singleprecursor approach to surfactant-capped nanocrystals of transition metal oxides, Journal of the American Chemical Society, vol.121, issue.49, pp.11595-96, 1999.

C. Roger, P. Hamon, L. Toupet, H. Rabaa, J. Y. Saillard et al., « Halo-and alkyl (pentamethylcyclopentadienyl)[1, 2-bis (diphenylphosphino) ethane] iron (III) 17-electron complexes: synthesis, NMR and magnetic properties and EHMO calculations, Organometallics, vol.10, issue.4, pp.1045-54, 1991.

M. Ron, H. Shechter, A. A. Hirsch, and . Niedzwiedz, « On the Mössbauer study of cementite », Physics Letters, vol.20, issue.5, pp.481-83, 1966.

R. E. Rosensweig, . Kaiser, and . Miskolczy, « Viscosity of magnetic fluid in a magnetic field, Journal of Colloid and Interface Science, vol.29, issue.4, pp.680-86, 1969.

L. M. Salah, Spectroscopic studies of the effect of addition of Y3+ on structural characteristics of Ni-Zn ferrites ». physica status solidi (a), vol.203, pp.271-81, 2006.

A. N. Shmakov, G. N. Kryukova, S. V. Tsybulya, A. L. Chuvilin, and L. P. Solovyeva, « Vacancy Ordering in ?-Fe 2 O 3 : Synchrotron X-ray Powder Diffraction and High-Resolution Electron Microscopy Studies, Journal of Applied Crystallography, vol.28, issue.2, pp.141-186, 1995.

R. Tadmor, R. E. Rosensweig, J. Frey, and J. Klein, « Resolving the puzzle of ferrofluid dispersants, Langmuir, vol.16, issue.24, pp.9117-9137, 2000.

R. Valenzuela, Magnetic ceramics, 2005.

C. Vericat, G. A. Vela, J. M. Benitez, . Gago, . Torrelles et al., , 2006.

, « Surface characterization of sulfur and alkanethiol self-assembled monolayers on Au (111) », Journal of Physics: Condensed Matter, vol.18, issue.48, p.867

R. D. Waldron, « Infrared spectra of ferrites, Physical Review, vol.99, issue.6, p.1727, 1955.

W. B. White and . Deangelis, « Interpretation of the vibrational spectra of spinels, Spectrochimica Acta Part A: Molecular Spectroscopy, vol.23, issue.4, pp.985-95, 1967.

W. Wu, Q. He, C. Et, and . Jiang, « Magnetic Iron Oxide Nanoparticles: Synthesis and Surface Functionalization Strategies, Nanoscale Research Letters, vol.3, issue.11, pp.397-415, 2008.

C. Yee, . Kataby, . Ulman, H. Prozorov, . White et al., « Self-assembled monolayers of alkanesulfonic and-phosphonic acids on amorphous iron oxide nanoparticles, Langmuir, vol.15, issue.21, pp.7111-7126, 1999.