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Route to tunable room temperature electric polarization in SrTiO<sub>3</sub>-CoFe<sub>2</sub>O<sub>4</sub> heterostructures
Maurel, L., Herrero-Martín, J., Motti, F., Vasili, H. B., Piamonteze, C., Heyderman, L. J., & Scagnoli, V. (2021). Route to tunable room temperature electric polarization in SrTiO3-CoFe2O4 heterostructures. Journal of Materials Chemistry C, 9(18), 5977-5984. https://doi.org/10.1039/d0tc05821a
Mixed-ligand zinc-oxoclusters: efficient chemistry for high resolution nanolithography
Thakur, N., Bliem, R., Mochi, I., Vockenhuber, M., Ekinci, Y., & Castellanos, S. (2020). Mixed-ligand zinc-oxoclusters: efficient chemistry for high resolution nanolithography. Journal of Materials Chemistry C, 8(41), 14499-14506. https://doi.org/10.1039/d0tc03597a
Unravelling the effect of fluorinated ligands in hybrid EUV photoresists by X-ray spectroscopy
Wu, L., Bespalov, I., Witte, K., Lugier, O., Haitjema, J., Vockenhuber, M., … Castellanos, S. (2020). Unravelling the effect of fluorinated ligands in hybrid EUV photoresists by X-ray spectroscopy. Journal of Materials Chemistry C, 8(42), 14757-14765. https://doi.org/10.1039/d0tc03216f
Photoacid generator-polymer interaction on the quantum yield of chemically amplified resists for extreme ultraviolet lithography
Fallica, R., & Ekinci, Y. (2018). Photoacid generator-polymer interaction on the quantum yield of chemically amplified resists for extreme ultraviolet lithography. Journal of Materials Chemistry C, 6(27), 7267-7273. https://doi.org/10.1039/c8tc01446a
A comprehensive structural and microstructural investigation of a new iron-telluride nano phase
Ulbrich, K. F., Bertolotti, F., Masciocchi, N., Cervellino, A., Guagliardi, A., & Campos, C. E. M. (2018). A comprehensive structural and microstructural investigation of a new iron-telluride nano phase. Journal of Materials Chemistry C, 6(12), 3047-3057. https://doi.org/10.1039/c7tc05456d
Band structure of the EuO/Si interface: justification for silicon spintronics
Lev, L. L., Averyanov, D. V., Tokmachev, A. M., Bisti, F., Rogalev, V. A., Strocov, V. N., & Storchak, V. G. (2017). Band structure of the EuO/Si interface: justification for silicon spintronics. Journal of Materials Chemistry C, 5(1), 192-200. https://doi.org/10.1039/C6TC03737B
Strong magnetic frustration in Y&lt;sub&gt;3&lt;/sub&gt;Cu&lt;sub&gt;9&lt;/sub&gt;(OH)&lt;sub&gt;19&lt;/sub&gt;Cl&lt;sub&gt;8&lt;/sub&gt;: a distorted kagome antiferromagnet
Puphal, P., Bolte, M., Sheptyakov, D., Pustogow, A., Kliemt, K., Dressel, M., … Krellner, C. (2017). Strong magnetic frustration in Y3Cu9(OH)19Cl8: a distorted kagome antiferromagnet. Journal of Materials Chemistry C, 5(10), 2629-2635. https://doi.org/10.1039/c6tc05110c
Contorted aromatics &lt;em&gt;via &lt;/em&gt;a palladium-catalyzed cyclopentannulation strategy
Bheemireddy, S. R., Ubaldo, P. C., Finke, A. D., Wang, L., & Plunkett, K. N. (2016). Contorted aromatics via a palladium-catalyzed cyclopentannulation strategy. Journal of Materials Chemistry C, 4(18), 3963-3969. https://doi.org/10.1039/c5tc02305j
Massive Ag migration through metal/ceramic nano-multilayers: An interplay between temperature, stress-relaxation and oxygen-enhanced mass transport
Chiodi, M., Cancellieri, C., Moszner, F., Andrzejczuk, M., Janczak-Rusch, J., & Jeurgens, L. P. H. (2016). Massive Ag migration through metal/ceramic nano-multilayers: An interplay between temperature, stress-relaxation and oxygen-enhanced mass transport. Journal of Materials Chemistry C, 4(22), 4927-4938. https://doi.org/10.1039/c6tc01098a
The structures and magnetic properties of FexCo1-xSb2O4 and MnxCo1-xSb2O4, 0 ≤ x ≤ 1
Cumby, J., De Laune, B. P., & Greaves, C. (2016). The structures and magnetic properties of FexCo1-xSb2O4 and MnxCo1-xSb2O4, 0 ≤ x ≤ 1. Journal of Materials Chemistry C, 4(1), 201-208. https://doi.org/10.1039/c5tc03333k
ON/OFF switching of silicon wafer electrochemistry by pH-responsive polymer brushes
Panzarasa, G., Dübner, M., Pifferi, V., Soliveri, G., & Padeste, C. (2016). ON/OFF switching of silicon wafer electrochemistry by pH-responsive polymer brushes. Journal of Materials Chemistry C, 4(26), 6287-6294. https://doi.org/10.1039/c6tc01822j
Magnetic interplay between two different lanthanides in a tris-phthalocyaninato complex: a viable synthetic route and detailed investigation in the bulk and on the surface
Lan, Y., Klyatskaya, S., Ruben, M., Fuhr, O., Wernsdorfer, W., Candini, A., … Affronte, M. (2015). Magnetic interplay between two different lanthanides in a tris-phthalocyaninato complex: a viable synthetic route and detailed investigation in the bulk and on the surface. Journal of Materials Chemistry C, 3(38), 9794-9801. https://doi.org/10.1039/c5tc02011e
CuMo&lt;sub&gt;0.9&lt;/sub&gt;W&lt;sub&gt;0.1&lt;/sub&gt;O&lt;sub&gt;4&lt;/sub&gt; phase transition with thermochromic, piezochromic, and thermosalient effects
Robertson, L., Penin, N., Blanco-Gutierrez, V., Sheptyakov, D., Demourgues, A., & Gaudon, M. (2015). CuMo0.9W0.1O4 phase transition with thermochromic, piezochromic, and thermosalient effects. Journal of Materials Chemistry C, 3(12), 2918-2924. https://doi.org/10.1039/c4tc02463j
Artificial multiferroic heterostructures
Vaz, C. A. F., & Staub, U. (2013). Artificial multiferroic heterostructures. Journal of Materials Chemistry C, 1(41), 6731-6742. https://doi.org/10.1039/c3tc31428f