Publications (see OPEN DATA for supplemental information):

Tappura, K. "A numerical study on the design trade-offs of a thin-film thermoelectric generator for large-area applications".
Renewable Energy 120 (2018) 78-87. (Published online Dec 2017) DOI: 10.1016/j.renene.2017.12.063 (OPEN ACCESS LINK)

Baptista, A.C., Ropio, I.C., Romba, B., Nobre, J., Henriques, C., Silva, J., de Paiva Martins, J.I.F., Borges, J.P.P. & Ferreira, I. "Cellulose-based electrospun fibers functionalized with polypyrrole and polyaniline for fully organic batteries". Journal of Materials Chemistry A. (2017) DOI: 10.1039/C7TA06457H

Tran, V. T., Saint-Martin, J., Dollfus, P., & Volz, S. High thermoelectric performance of graphite nanofibers. arXiv preprint arXiv:1709.04515. (2017) (OPEN ACCESS LINK)

Faria, P., Duarte, P., Barbosa, D., & Ferreira, I. "New composite of natural hydraulic lime mortar with graphene oxide". Construction and Building Materials, 156, 1150-1157. (2017) DOI: 10.1016/j.conbuildmat.2017.09.072 (OPEN ACCESS LINK)

Loureiro, J., Mateus, T., Filonovich, S., Ferreira, M., Figueira, J., Rodrigues, A., Donovan, B. F., Hopkins, P. E., & Ferreira, I. "Improved thermoelectric properties of nanocrystalline hydrogenated silicon thin films by post-deposition thermal annealing". Thin Solid Films 642, 276-280. (2017) DOI: 10.1016/j.tsf.2017.09.047

Sousa, D. M., Lima, J. C., & Ferreira, I. "Synthesis of Cadmium Selenide Quantum Dots, Using 2, 2‐Bipyridine as a Capping and Phase Transfer Agent". ChemistrySelect, 2(3), 1271-1274. (2017) DOI: 10.1002/slct.201601804

Tran, V. T., Saint-Martin, J., Dollfus, P., & Volz, S. "Third nearest neighbor parameterized tight binding model for graphene nano-ribbons". AIP Advances, 7(7), 075212. (2017) DOI: 10.1063/1.4994771 (OPEN ACCESS LINK)

Tran, V. T., Saint-Martin, J., Dollfus, P., & Volz, S. "Optimizing the thermoelectric performance of graphene nano-ribbons without degrading the electronic properties". Scientific Reports, 7. (2017) DOI: 10.1038/s41598-017-02230-0 (OPEN ACCESS LINK)

Figueira, J., Loureiro, J., Marques, J., Bianchi, C., Duarte, P., Ruoho, M., Tittonen, I., & Ferreira, I. "Optimization of Cuprous Oxides Thin Films to be used as Thermoelectric Touch Detectors". ACS applied materials & interfaces, 9(7), 6520-6529. (2017) DOI: 10.1021/acsami.6b12753

Tran, V. T., Saint-Martin, J., Dollfus, P., & Volz, S.  Optimizing isotope and vacancy engineering in graphene ribbons to enhance the thermoelectric performance without degrading the electronic properties. arXiv preprint arXiv:1609.05187. (2016) (OPEN ACCESS LINK)

M. Ruoho, T. Juntunen, T. Alasaarela, M.Pudas, and I. Tittonen, "Transparent, Flexible, and Passive Thermal Touch Panel", Adv. Mater. Technol. (2016) DOI: 10.1002/admt.201600204 (featured on the back cover) (OPEN ACCESS LINK)

S. Ali, T. Juntunen, S. Sintonen, O. M. Ylivaara, R. L. Puurunen, H. Lipsanen, I. Tittonen, and S. P. Hannula, "Thermal conductivity of amorphous Al2O3/TiO2 nanolaminates deposited by atomic layer deposition", Nanotechnology 27, 445704. (2016) DOI: 10.1088/0957-4484/27/4/445704

M. Ruoho, T. Juntunen and I. Tittonen. "Large-area thermoelectric high-aspect-ratio nanostructures by atomic layer deposition", Nanotechnology 27, 355403 (2016) DOI: 10.1088/0957-4484/27/35/355403 (featured on the cover)

C. Bianchi, J. Loureiro, P. Duarte, J. Marques, J. Figueira, I. Ropio and I. Ferreira. "V2O5 Thin Films for Flexible and High Sensitivity Transparent Temperature Sensor", Advanced Materials Technologies, (2016) DOI: 10.1002/admt.201600077

C. Bianchi, L. M. Ferreira, J. Loureiro, A. Rodrigues, P. Duarte, A. C. Baptista, and I. M. Ferreira. "Vanadium Pentoxide Alloyed with Graphite for Thin-Film Thermal Sensors." Journal of Electronic Materials 45, no. 3 (2016): 1987-1991. DOI: 10.1007/s11664-016-4363-2 (OPEN ACCESS LINK)


Almeida, A. C. D. (2016). Development of Graphene Based Supercapacitors. (OPEN ACCESS LINK)

Ritto, G. N. F. (2016). Growing of biomorphic nanomaterials based on calcium carbonate. (OPEN ACCESS LINK).

Ruoho, M. (2016). Nanostructured thin films for thermoelectric and sensing applications. (OPEN ACCESS LINK)



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