Self-assemblies of Fe3O4 nanocrystals: towards nanoscale precision of photothermal effects in the tumor microenvironment. A. Nicolas-Boluda, Z.Yang, T.Guilbert, L. Fouassier, F. Carn, F. Gazeau and M. P. Pileni Adv. Funct. Mater., 2021, 31, 2006824 (1-17)
Intracellular fate of hydrophobic nanocrystal self-assemblies in tumor cells
Nicolas-Boluda, Z. Yang, I. Dobryden, F. Carn N. Winckelmans, C. Péchoux, P. Bonville, S. Bals, P. M. Claesson, F. Gazeau and M.P.Pileni
Adv. Funct. Mater., 2020, 30, 2004274 (1-15)
Light–heat conversion dynamics in highly diversified water-dispersed hydrophobic nanocrystal assemblies,
A.Mazzanti, Z. Yang, M. G. Silva, N. Yang, G. Rizza, P.E. Coulon, C. Manzonif, A. M. de Paula, G. Cerullo, G. Della Valle and M.P. Pileni
Proc. Natl. Acad. Sci. USA, 2019, 116, 8161-8166
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Impact of the metallic crystalline structure on the properties of nanocrystals and their mesoscopic assemblies.
MP. Pileni. Acc. Chem. Res., 2017, 50, 1946–1955
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N‑Heterocyclic Carbene Ligands for Au Nanocrystal Stabilization and Three-Dimensional Self-Assembly.
S. Roland, X. Ling, and M.P. Pileni, Langmuir, 2016, 32, 7683−7696
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Nano Kirkendall Effect Related to Nanocrystallinity of Metal Nanocrystals: Influence of the Outward and Inward Atomic Diffusion on the Final Nanoparticle Structure
Z.Yang, N. Yang and M.P.Pileni J.Phys.Chem.C., 2015,119, 22249-22260
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Nano-Supracrystallinity
M.P.Pileni EPL, 2015, 109 58001.
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Supra and Nano crystallinity: Specific properties related to crystal growth mechanisms and nanocrystallinity. M.P.Pileni, Account Chem Res., 2012, 45, 1965-1972.
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Supra – and nanocrystallinities: a new scientific adventure
M.P.Pileni. J.Phys. Cond.Mat., 2011, 23, 503102.
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Analogy Between Atoms in a Nanocrystal and Nanocrystals in a Supracrystal: Is It Real or Just a Highly Probable Speculation ?
N. Goubet and M. P. Pileni. J. Phys. Chem. Lett., 2011, 2, 1024–1031.
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2D superlattices and 3D supracrystals of metal nanocrystals : a new scientific adventure.
M.P.Pileni J. Mater. Chem., 2011, 21, 16748 – 16758
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Supracrystals of inorganic nanocrystals: An open challenge for new physical properties
M.P.Pileni Acc. Chem. Res., 2008, 41, 1799-1809.
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Self-assembly of inorganic nanocrystals: Fabrication and collective intrinsic properties.
M.P. Pileni Acc. of Chem. Res., 2007, 40, 685-693.
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Control of the size and shape of inorganic nanocrystals at various scales from nano to macrodomains.
M.P. Pileni J. Phys. Chem. C 111, 2007, 9019-9038.
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Role of soft colloidal templates in the control of size and shape of inorganic nanocrystals.
M.P. Pileni Nature Materials, 2003, 2, 145-150.
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Ferrite Magnetic Fluids: A New Fabrication Method and Magnetic Properties of Nanocrystals differing by their size and composition.
M.P. Pileni Advanced Functionalized Material, 2001, 11 , 323- 336.
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Mesostructured Fluids in oil rich regions: Structural and templating approaches.
M.P. Pileni Langmuir, 2001, 17, 7476-7487.
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Nanocrystals self assemblies: fabrication and collective properties.
M.P. Pileni J. Phys. Chem., 2001, 105, 3358 – 3372 .
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Nanosized Particles Made in Colloidal Assemblies.
M.P.Pileni Langmuir, 1997, 13, 3266-3276.
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Self assembled monolayer of nanosized particles differing by their sizes.
L.Motte, F. Billoudet and M.P. Pileni J. Phys. Chem., 1995, 99, 16425-16429.
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Reverse micelles : a microreactors.
M.P. Pileni. J. Phys.Chem., 1993, 97, 6961-6974.
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Reverse micelles as hosts for proteins and small molecules.
P.P .Luisi, M. Giomini, M.P .Pileni, B. Robinson Biochem. Biophys. Acta., 1988, 947, 209-216.
Solubilization by reverse micelles: solute localization and structure perturbation.
M.P. Pileni, T. Zemb and C. Petit Chem. Phys. Letters., 1985, 118, 414
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