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Beuvier, T., Richard-Plouet, M., Mancini-Le Granvalet, M., Brousse, T., Crosnier, O. & Brohan, L. (2010) TiO2(B) Nanoribbons As Negative Electrode Material for Lithium Ion Batteries with High Rate Performance. Inorg. Chem. 49 8457–8464. |
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Bichoutskaia, E., Liu, Z., Kuganathan, N., Faulques, E., Suenaga, K., Shannon, I. J. & Sloan, J. (2012) High-precision imaging of an encapsulated Lindqvist ion and correlation of its structure and symmetry with quantum chemical calculations. Nanoscale, 4 1190–1199. |
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Chauvin, A., Heu, W. T. C., Tessier, P.-Y. & El Mel, A.-A. (2016) Impact of the morphology and composition on the dealloying process of co-sputtered silver-aluminum alloy thin films. Phys. Status Solidi B-Basic Solid State Phys. 253 2167–2174. |
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Chauvin, A., Delacote, C., Boujtita, M., Angleraud, B., Ding, J., Choi, C.-H., Tessier, P.-Y. & El Mel, A.-A. (2016) Dealloying of gold-copper alloy nanowires: From hillocks to ring-shaped nanopores. Beilstein J. Nanotechnol. 7 1361–1367. |
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Chauvin, A., Delacote, C., Molina-Luna, L., Duerrschnabel, M., Boujtita, M., Thiry, D., Du, K., Ding, J., Choi, C.-H., Tessier, P.-Y. & El Mel, A.-A. (2016) Planar Arrays of Nanoporous Gold Nanowires: When Electrochemical Dealloying Meets Nanopatterning. ACS Appl. Mater. Interfaces, 8 6611–6620. |
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Chung, Y.-A., Lee, C.-Y., Peng, C.-W. & Chiu, H.-T. (2006) Reactive template assisted growth of one-dimensional nanostructures of titanium dioxide. Mater. Chem. Phys. 100 380–384. |
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Djerdj, I., Cao, M., Rocquefelte, X., Cerny, R., Jaglicic, Z., Arcon, D., Potocnik, A., Gozzo, F. & Niederberger, M. (2009) Structural Characterization of a Nanocrystalline Inorganic-Organic Hybrid with Fiberlike Morphology and One-Dimensional Antiferromagnetic Properties. Chem. Mat. 21 3356–3369. |
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El Mel, A. A., Gautron, E., Angleraud, B., Granier, A., Xu, W., Choi, C. H., Briston, K. J., Inkson, B. J. & Tessier, P. Y. (2012) Fabrication of a nickel nanowire mesh electrode suspended on polymer substrate. Nanotechnology, 23 275603. |
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El Mel, A.-A., Tessier, P.-Y., Buffiere, M., Gautron, E., Ding, J., Du, K., Choi, C.-H., Konstantinidis, S., Snyders, R., Bittencourt, C. & Molina-Luna, L. (2016) Controlling the Formation of Nanocavities in Kirkendall Nanoobjects through Sequential Thermal Ex Situ Oxidation and In Situ Reduction Reactions. Small, 12 2885–2892. |
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El Mel, A. A., Buffiere, M., Bouts, N., Gautron, E., Tessier, P. Y., Henzler, K., Guttmann, P., Konstantinidis, S., Bittencourt, C. & Snyders, R. (2013) Growth control, structure, chemical state, and photoresponse of CuO-CdS core-shell heterostructure nanowires. Nanotechnology, 24 265603. |
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El Mel, A.-A., Molina-Luna, L., Buffiere, M., Tessier, P.-Y., Du, K., Choi, C.-H., Kleebe, H.-J., Konstantinidis, S., Bittencourt, C. & Snyders, R. (2014) Electron Beam Nanosculpting of Kirkendall Oxide Nanochannels. ACS Nano, 8 1854–1861. |
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El Mel, A.-A., Nakamura, R. & Bittencourt, C. (2015) The Kirkendall effect and nanoscience: hollow nanospheres and nanotubes. Beilstein J. Nanotechnol. 6 1348–1361. |
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El Mel, A.-A., Duvail, J.-L., Gautron, E., Xu, W., Choi, C.-H., Angleraud, B., Granier, A. & Tessier, P.-Y. (2012) Highly ordered ultralong magnetic nanowires wrapped in stacked graphene layers. Beilstein J. Nanotechnol. 3 846–851. |
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Eustache, E., Douard, C., Retoux, R., Lethien, C. & Brousse, T. (2015) MnO2 Thin Films on 3D Scaffold: Microsupercapacitor Electrodes Competing with "Bulk" Carbon Electrodes. Adv. Energy Mater. 5 1500680. |
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Gnezdilov, V., Lemmens, P., Pashkevich, Y. G., Payen, C., Choi, K. Y., Hemberger, J., Loidl, A. & Tsurkan, V. (2011) Phonon anomalies and possible local lattice distortions in giant magnetocapacitive CdCr2S4. Phys. Rev. B, 84 045106. |
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Huang, C.-H., Chang, Y.-H., Lin, H.-K., Peng, C.-W., Chung, W.-S., Lee, C.-Y. & Chiu, H.-T. (2007) Phase segregation assisted morphology sculpting: Growth of graphite and silicon crystals via vapor-solid reactions. J. Phys. Chem. C, 111 4138–4145. |
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Khaywah, M. Y., Jradi, S., Louarn, G., Lacroute, Y., Toufaily, J., Harnieh, T. & Adam, Pierre.-M. (2015) Ultrastable, Uniform, Reproducible, and Highly Sensitive Bimetallic Nanoparticles as Reliable Large Scale SERS Substrates. J. Phys. Chem. C, 119 26091–26100. |
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Long, Y. Z., Duvail, J. L., Li, M. M., Gu, C., Liu, Z. & Ringer, S. P. (2010) Electrical Conductivity Studies on Individual Conjugated Polymer Nanowires: Two-Probe and Four-Probe Results. Nanoscale Res. Lett. 5 237–242. |
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Malta, M., Louarn, G., Errien, N. & Torresi, R. M. (2006) Redox behavior of nanohybrid material with defined morphology: Vanadium oxide nanotubes intercalated with polyaniline. J. Power Sources, 156 533–540. |
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Marron, F. D., Canovas, E., Levy, M. Y., Marti, A., Luque, A., Afshar, M., Albert, J., Lehmann, S., Abou-Ras, D., Sadewasser, S. & Barreau, N. (2010) Optoelectronic evaluation of the nanostructuring approach to chalcopyrite-based intermediate band materials. Sol. Energy Mater. Sol. Cells, 94 1912–1918. |
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Pokrop, R., Pamula, K., Deja-Drogomirecka, S., Zagorska, M., Reiss, P., Louarn, G., Chandezon, F. & Pron, A. (2010) Molecular hybrids of CdSe semiconductor nanocrystals with terthiophene carboxylic acid or its polymeric analogue. Mater. Chem. Phys. 123 756–760. |
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Queffelec, C., Forato, F., Bujoli, B., Knight, A. D., Fonda, E. & Humbert, B. (2020) Investigation of copper oxidation states in plasmonic nanomaterials by XAS and Raman spectroscopy. Phys. Chem. Chem. Phys. 22 2193–2199. |
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Smaranda, I., Baibarac, M., Baltog, I., Mevellec, J. Y. & Lefrant, S. (2013) Spectroelectrochemical properties of the single walled carbon nanotubes functionalized with polydiphenylamine doped with heteropolyanions. J. Solid State Chem. 197 352–360. |
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Song, Y., Zhang, J., Yang, L., Cao, S., Yang, H., Zhang, J., Jiang, L., Dan, Y., Le Rendu, P. & Nguyen, T. P. (2016) Photocatalytic activity of TiO2 based composite films by porous conjugated polymer coating of nanoparticles. Mater. Sci. Semicond. Process, 42 54–57. |
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Torres-Martinez, N. E., Garza-Navarro, M. A., Lucio-Porto, R., Garcia-Gutierrez, D., Torres-Castro, A. & Gonzalez-Gonzalez, V. A. (2013) One-pot synthesis of magnetic hybrid materials based on ovoid-like carboxymethyl-cellulose/cetyltrimethylammonium-bromide templates. Mater. Chem. Phys. 141 735–743. |
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