Publications

Hren, M., Hribernik, S., Gorgieva, S., Motealleh, A., Eqtesadi, S., Wendellbo, R., Lue, S. J. & Božič, M. (2021).
Chitosan-Mg(OH)2 based composite membrane containing nitrogen doped GO for direct ethanol fuel cell.
Cellulose, Vol. 28, Issue 3, SP-EP; 1599-1616, SN 1572-882X.
Doi: 10.1007/s10570-020-03603-x

Cámara-Torres, M., Sinha, R., Eqtesadi, S., Wendelbo, R., Scatto, M., Scopece, P., Sanchez, A., Villanueva, S., Egizabal, A., Álvarez, N., Patelli, A., Mota, C. & Moroni, L. (2021). 
Effect of the reduced graphene oxide (rGO) compaction degree and concentration on rGO–polymer composite printability and cell interactions.
Nanoscale, Vol. 13, Issue 34, SN 2040-3364, SP-EP 14382-14398.
Doi: 10.1039/D1NR02927D

Nikpay, M., Eqtesadi, S. & Krebs, P. (2020).
Influence of synthetic wastewater on entrapped air on the isotactic and atactic polypropylene microplastic surfaces.
Journal of Environmental Health Science and Engineering, Vol. 18, Issue 2, SP-EP 1569-1579, SN 2052-336X.
Doi: 10.1007/s40201-020-00575-9

Masa, S., Mena, M. J., Hontañón, E., Lozano, J., Eqtesadi, S. & Narros, A. (2020).
Electrospray printing of graphene layers for chemiresistive gas sensors.
Engineering Proceedings, 2(1), 66.
Doi: 10.3390/ecsa-7-08203

Masa, S., Robés, D., Hontañón, E., Lozano, J., Eqtesadi, S. & Narros, A. (2020).
Graphene-tin oxide composite nanofibers for low temperature detection of NO2 and O3.
Sensors & Transducers, Vol. 246, Issue 7, November 2020, pp. 71-78.
Link to article

Masa, S., Robés, D., Hontañón, E., Lozano, J., Eqtesadi, S. & Narros, A. (2020).
Graphene-loaded tin oxide nanofibers for low temperature detection of air pollutants.
6th International Conference on Sensors Engineering and Electronics Instrumentation Advances (SEIA' 2020), 23-25 September 2020, Porto, Portugal; (009), pages 27-32, ISBN: 978-84-09-23483-7.
Link to article

Eqtesadi, S., Motealleh, A., Perera, F. H., Miranda, P., Pajares, A., Wendelbo, R., Guiberteau, F. & Ortiz, A. L. (2018).
Fabricating geometrically-complex B4C ceramic components by robocasting and pressureless spark plasma sintering.
Scripta Materialia, Vol. 145, SP-EP 14-18, SN 1359-6462.
Doi: 10.1016/j.scriptamat.2017.10.001

Eqtesadi, S., Motealleh, A., Miranda, P., Pajares, A., Lemos, A. & Ferreira, J. M. F. (2014).
Robocasting of 45S5 bioactive glass scaffolds for bone tissue engineering.
Journal of the European Ceramic Society, Vol. 34, Issue 1, SP-EP 107-118, SN 0955-2219.
Doi: 10.1016/j.jeurceramsoc.2013.08.003

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