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Combining parallel pattern generation of electrohydrodynamic lithography with serial addressing
Boudoire, F., Partel, S., Toth, R., & Heier, J. (2018). Combining parallel pattern generation of electrohydrodynamic lithography with serial addressing. RSC Advances, 8(54), 30932-30936. https://doi.org/10.1039/C8RA06160B
Molecular origin and electrochemical influence of capacitive surface states on iron oxide photoanodes
Hu, Y., Boudoire, F., Herrmann-Geppert, I., Bogdanoff, P., Tsekouras, G., Mun, B. S., … Braun, A. (2016). Molecular origin and electrochemical influence of capacitive surface states on iron oxide photoanodes. Journal of Physical Chemistry C, 120(6), 3250-3258. https://doi.org/10.1021/acs.jpcc.5b08013
Probing the mystery of Liesegang band formation: revealing the origin of self-organized dual-frequency micro and nanoparticle arrays
Tóth, R., Walliser, R. M., Lagzi, I., Boudoire, F., Düggelin, M., Braun, A., … Constable, E. C. (2016). Probing the mystery of Liesegang band formation: revealing the origin of self-organized dual-frequency micro and nanoparticle arrays. Soft Matter, 12(40), 8367-8374. https://doi.org/10.1039/C6SM01564F
Understanding the formation of aligned, linear arrays of Ag nanoparticles
Walliser, R. M., Tóth, R., Lagzi, I., Mathys, D., Marot, L., Braun, A., … Constable, E. C. (2016). Understanding the formation of aligned, linear arrays of Ag nanoparticles. RSC Advances, 6(34), 28388-28392. https://doi.org/10.1039/C6RA04194A
Hematite nanostructuring using electrohydrodynamic lithography
Boudoire, F., Toth, R., Heier, J., Braun, A., & Constable, E. C. (2014). Hematite nanostructuring using electrohydrodynamic lithography. Applied Surface Science, 305, 62-66. https://doi.org/10.1016/j.apsusc.2014.02.161
Photonic light trapping in self-organized all-oxide microspheroids impacts photoelectrochemical water splitting
Boudoire, F., Toth, R., Heier, J., Braun, A., & Constable, E. C. (2014). Photonic light trapping in self-organized all-oxide microspheroids impacts photoelectrochemical water splitting. Energy and Environmental Science, 7(8), 2680-2688. https://doi.org/10.1039/C4EE00380B
The nature of the nonmetal–metal transition in LixCoO2 oxide
Milewska, A., Świerczek, K., Tobola, J., Boudoire, F., Hu, Y., Bora, D. K., … Molenda, J. (2014). The nature of the nonmetal–metal transition in LixCoO2 oxide. Solid State Ionics, 263, 110-118. https://doi.org/10.1016/j.ssi.2014.05.011
A dip coating process for large area silicon-doped high performance hematite photoanodes
Hu, Y., Bora, D. K., Boudoire, F., Häussler, F., Graetzel, M., Constable, E. C., & Braun, A. (2013). A dip coating process for large area silicon-doped high performance hematite photoanodes. Journal of Renewable and Sustainable Energy, 5(4), 043109 (9 pp.). https://doi.org/10.1063/1.4812831