ChercheurMatière et rayonnement - MATRIX

Carbon and imogolite nanotubes, confined water in hydrophobic or hydrophilic nanochannels : structural and dynamical properties.


L’état de ce compte est « Approuvés »

Publications

Paineau, E-N 2023 Découverte d’une structure mono-paroi transitoire lors de la synthèse hydrothermale de nanotubes d’aluminogermanate à double parois.
Hotton, C and Paineau, E-N 2023 Self-assembly of imogolite nanotubes under acoustic levitation.
Rouzière, S, Balédent, V, Paineau, E, Elkaim, E, Bizien, T, Nataf, L, Pan, Y, and Launois, P 2023 Compressibility and Structural Transformations of Aluminogermanate Imogolite Nanotubes under Hydrostatic Pressure. Inorganic Chemistry, 62(2): 957–966. DOI: https://doi.org/10.1021/acs.inorgchem.2c03798
D’Angelo, A 2023 Structuration, dynamics and diffusion of water in imogolite nanotubes. Euroclay 2023, Bari, Italie, 24-27 juillet(2023).
D’Angelo, A 2023 The atomic structure of imogolite nanotubes: a 50 years old issue reinvestigated by X-ray scattering experiments and Molecular Dynamics simulations.
Pan, Y 2023 Investigation of the structurale evolution of thermal treated imogolite nanotubes.
Asaad, A 2023 Effect of clay particles’ preferential orientation on the diffusion of water in clayey media.
Hotton, C 2023 Self-assembly of imogolite nanotubes under acoustic levitation.
Hotton, C and Paineau, E-N 2023 Auto-assemblage de nanotubes d’imogolite par lévitation acoustique. 20ème colloque du GFA, Mulhouse, 21-22 juin (2023).
Pan, Y and Paineau, E-N 2023 Etude par diffraction et spectroscopie d’absorption X de l’évolution structurale de nanotubes d’imogolite pendant un recuit thermique.
D’Angelo, A, Paineau, E, Rouzière, S, Elkaim, É, Goldmann, C, Toquer, D, Rols, S, and Launois, P 2023 The atomic structure of imogolite nanotubes: A 50 years old issue reinvestigated by X-ray scattering experiments and molecular dynamics simulations. Applied Clay Science, 242: 107043. DOI: https://doi.org/10.1016/j.clay.2023.107043
Paineau, E-N 2023 Découverte d’une structure mono-paroi transitoire lors de la synthèse hydrothermale de nanotubes d’aluminogermanate à double-paroi,.
Paineau, E-N 2023 Découverte d’une structure mono-paroi transitoire lors de la synthèse hydrothermale de nanotubes d’aluminogermanate à double-paroi,.
Beauvois, A, Vantelon, D, Jestin, J, Dupont, A, Briois, V, Paineau, E, Bizien, T, Pradel, A, and Davranche, M 2023 Aluminum-induced colloidal destabilization of iron-organic matter nanoaggregates. Geochimica et Cosmochimica Acta, 344: 1–11. DOI: https://doi.org/10.1016/j.gca.2023.01.005
Jimenéz-Calvo, P, Muñoz-Batista, M J, Isaacs, M, Ramnarain, V, Ihiawakrim, D, Li, X, Ángel Muñoz-Márquez, M, Teobaldi, G, Kociak, M, and Paineau, E 2023 A compact photoreactor for automated H2 photoproduction: Revisiting the (Pd, Pt, Au)/TiO2 (P25) Schottky junctions. Chemical Engineering Journal, 459: 141514. DOI: https://doi.org/10.1016/j.cej.2023.141514
Wang, C, Li, J, Paineau, E-N, Remita, H, and Ghazzal, M N 2023 Pt Atomically Dispersed in Black TiO 2− x /Cu x O with Chiral‐Like Nanostructure for Visible‐Light H 2 Generation. Solar RRL, 7(5): 2200929. DOI: https://doi.org/10.1002/solr.202200929
Moore, J F, Paineau, E, Launois, P, and Shaffer, M S P 2023 Wet spinning imogolite nanotube fibres: an in situ process study. Nanoscale Advances, 5(12): 3376–3385. DOI: https://doi.org/10.1039/D3NA00013C
Jatav, S, Xiang, H, Herber, M, Paineau, E, and Hill, E H 2022 In 2 S 3 Growth Templated by Aluminogermanate Double‐Walled Imogolite Nanotubes Toward Efficient Visible Light Photocatalysts. Solar RRL, 2200947. DOI: https://doi.org/10.1002/solr.202200947
Launois, P 2022 Eau nanocinfinée : organization périodique unidimensionnelle dans des nanotubes d’argile.
Martin-Gassin, G, Paineau, E, Launois, P, and Gassin, P-M 2022 Water Organization around Inorganic Nanotubes in Suspension Probed by Polarization-Resolved Second Harmonic Scattering. The Journal of Physical Chemistry Letters, 13(30): 6883–6888. DOI: https://doi.org/10.1021/acs.jpclett.2c01392
Akri, M 2022 Tubular clay materials: Design and orientation distribution function study.
D’Angelo, A, Launois, P, Paineau, E-N, and Rols, S 2022 Stabilization and organization of water in clay nanotubes.
Naciri, Y, Ghazzal, M N, and Paineau, E-N 2022 Synthesis and characterization of Ti-containing aluminogermanate imogolite nanotubes for photocatalytic hydrogen production from water.
Wang, C 2022 Sol-Gel biotemplating of mesoporous metal oxides: Original approach for photocatalyst design and enhanced H2 generation.
Monet, G, Rouzière, S, Vantelon, D, Launois, P, and Paineau, E-N 2022 Mechanisms of structural reordering during thermal transformation of aluminogermanate imogolite nanotubes. ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 77(MS-103-5): C650–C650.
Lavrynenko, O M, Zahornyi, M M, Paineau, E, Pavlenko, O Yu, Tyschenko, N I, and Bykov, O I 2022 Characteristic of TiO2&Ag0 nanocomposites formed via transformation of metatitanic acid and titanium (IV) isopropoxide. Materials Today: Proceedings, 62: 7664–7669. DOI: https://doi.org/10.1016/j.matpr.2022.03.002
Monet, G, D’angelo, M, Paineau, E-N, Teobaldi, G, Rols, S, and Launois, P 2022 Specific water structure in a geo-inspired nanotube and interrelated dynamics. ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 77(PS-32-4): C1009–C1009.
Paineau, E-N, Rouzière, S, and Launois, P 2021 Des imogolites naturelles aux analogues synthétiques : apport des rayons X à l’étude des phases cristallines nanotubulaires.
Monneron-Gyurits, M, Joussein, E, Courtin-Nomade, A, Grauby, O, Paineau, E-N, Reguer, S, and Soubrand, M 2021 A fast one-pot synthesize of crystalline anglesite by hydrothermal synthesis for environmental assessment on pure phase. Environmental Science and Pollution Research, 17373. DOI: https://doi.org/10.1007/s11356-021-17011-6
Paineau, E-N 2021 Liquid-crystal properties and applications of aqueous suspensions of inorganic imogolite nanotubes.
Hamon, C 2021 Doping liquid crystals of colloidal inorganic nanotubes by additive-free metal nanoparticles.
Hamon, C 2021 Doping liquid crystals of colloidal inorganic nanotubes by additive-free metal nanoparticles.
Jimenez-Calvo, P 2021 Schottky junctions for validating a photo-cell reactor for online H2 production.
Wang, C, Paineau, E-N, Remita, H, and Ghazzal, M N 2021 Cellulose Nanocrystals in Spherical Titania-Sol Microdroplet: From Dynamic Self-Assembly to Nanostructured TiO x /C Microsphere Synthesis. Chemistry of Materials, 33(17): 6925–6933. DOI: https://doi.org/10.1021/acs.chemmater.1c01865
Tom, C, Tanuku, V M S G, Paineau, E-N, and Pujala, R K 2021 Binary Mixtures of Colloidal Cellulose Nanocrystals and Laponite for Preparation of Functional Nanocomposites. ACS Applied Nano Materials, 4(8): 8586–8599. DOI: https://doi.org/10.1021/acsanm.1c02210
Joussein, E 2021 How explain the high charge halloysite in soils: X-ray absorption spectroscopy investigations.  23-27 August Genève (2021).
Cavallaro, G, Lazzara, G, Pignon, F, Chiappisi, L, and Paineau, E-N 2021 Effect of Polymer Length on the Adsorption onto Aluminogermanate Imogolite Nanotubes. Langmuir, 37(32): 9858–9864. DOI: https://doi.org/10.1021/acs.langmuir.1c01549
Hamon, C, Beaudoin, E, Launois, P, and Paineau, E-N 2021 Doping Liquid Crystals of Colloidal Inorganic Nanotubes by Additive-Free Metal Nanoparticles. The Journal of Physical Chemistry Letters, 12(21): 5052–5058. DOI: https://doi.org/10.1021/acs.jpclett.1c01311
Moore, J F, Paineau, E-N, Launois, P, and Shaffer, M S P 2021 Continuous Binder-Free Fibers of Pure Imogolite Nanotubes. ACS Applied Materials & Interfaces, 13(15): 17940–17947. DOI: https://doi.org/10.1021/acsami.1c00971
Paineau, E-N 2021 Unraveling the photocatalytic potential of modified imogolite nanotubes for hydrogen production.
Launois, P 2021 Etude in situ de l’évolution structural de nanotubes d’imogolite en fonction de la temperature.
D’Angelo, A 2021 Geo-inspired nanotubes: a neutron scattering and molecular dynamics study.
Asaad, A 2021 Effect of particle orientation on the diffusion of water and ions in the dual porosity of vermiculite porous media.
Paineau, E-N 2021 In-situ monitoring of the structural evolution of germanium-based imogolite nanotubes during dehydroxylationen ligne,.
Asaad, A, Hubert, F, Ferrage, E, Dabat, T, Paineau, E-N, Porion, P, Savoye, S, Gregoire, B, Dazas, B, Delville, A, and Tertre, E 2021 Role of interlayer porosity and particle organization in the diffusion of water in swelling clays. Applied Clay Science, 207: 106089. DOI: https://doi.org/10.1016/j.clay.2021.106089
N’Guessan, N E, Joussein, E, Courtin-Nomade, A, Paineau, E-N, Soubrand, M, Grauby, O, Robin, V, Cristina, C D, Vantelon, D, Launois, P, Fondanèche, P, Rossignol, S, Texier-Mandoki, N, and Bourbon, X 2021 Role of cations on the dissolution mechanism of kaolinite in high alkaline media. Applied Clay Science, 205: 106037. DOI: https://doi.org/10.1016/j.clay.2021.106037
Paineau, E-N and Launois, P 2020 Influence of the Al/Ge Ratio on the Structure and Self-Organization of Anisometric Imogolite Nanotubes. Crystals, 10(12): 1094. DOI: https://doi.org/10.3390/cryst10121094
Lee, W J, Paineau, E-N, Anthony, D B, Gao, Y, Leese, H S, Rouzière, S, Launois, P, and Shaffer, M S P 2020 Inorganic Nanotube Mesophases Enable Strong Self-Healing Fibers. ACS Nano, 14(5): 5570–5580. DOI: https://doi.org/10.1021/acsnano.9b09873
Li, J, Jiménez-Calvo, P, Paineau, E-N, and Ghazzal, M N 2020 Metal Chalcogenides Based Heterojunctions and Novel Nanostructures for Photocatalytic Hydrogen Evolution. Catalysts, 10(1): 89. DOI: https://doi.org/10.3390/catal10010089
Paineau, E-N, Rouzière, S, Monet, G, Diogo, C C, Morfin, I, and Launois, P 2020 Role of initial precursors on the liquid-crystalline phase behavior of synthetic aluminogermanate imogolite nanotubes. Journal of Colloid and Interface Science, 580: 275–285. DOI: https://doi.org/10.1016/j.jcis.2020.07.036