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Azari, R. K., Lan, T., & Santato, C. (2023). On the factors affecting the response time of synaptic ion-gated transistors. Journal of Materials Chemistry C, 11(24), 8293-8299. Lien externe
Arbizzani, C., Yu, Y., Li, J., Xiao, J., Xia, Y.-, Yang, Y., Santato, C., Raccichini, R., & Passerini, S. (2020). Good practice guide for papers on supercapacitors and related hybrid capacitors for the Journal of Power Sources. Journal of Power Sources, 450, 227636 (3 pages). Lien externe
Acquaroli, L. N., Newby, P., Santato, C., & Peter, Y.-A. (2016). Thermal properties of methyltrimethoxysilane aerogel thin films. AIP Advances, 6(10). Disponible
Albano, L. G. S., Di Mauro, E., Kumar, P., Cicoira, F., Graeff, C. F. O., & Santato, C. (2016). Novel insights on the physicochemical properties of eumelanins and their DMSO derivatives. Polymer International, 65(11), 1315-1322. Lien externe
Barbosa, M. S., da Silva, R. A., Santato, C., & Orlandi, M. O. (2022). Detection of H2 facilitated by ionic liquid gating of tungsten oxide films. Journal of Vacuum Science & Technology A, 40(1), 8 pages. Lien externe
Barbosa, M. S., Balke, N., Tsai, W.-Y., Santato, C., & Orlandi, M. O. (2020). Structure of the Electrical Double Layer at the Interface between an Ionic Liquid and Tungsten Oxide in Ion-Gated Transistors. Journal of Physical Chemistry Letters, 11(9), 3257-3262. Lien externe
Barbosa, M., Oliveira, F. M. B., Meng, X., Soavi, F., Santato, C., & Orlandi, M. O. (2018). Tungsten oxide ion gel-gated transistors: how structural and electrochemical properties affect the doping mechanism. Journal of Materials Chemistry C, 6(8), 1980-1987. Lien externe
Bayatpour, S., Isik, D., & Santato, C. (2017). Films of Transition Metal Complexes Including Ionic Liquids: Dramatic Effects of Processing Parameters and Substrate on the Film Morphology. Journal of Electronic Materials, 47(1), 402-408. Lien externe
Bayatpour, S., Ladouceur, S., Zysman-Colman, E., Cicoira, F., & Santato, C. (2011). Novel Light Emitting Electrochemical Cells Based on Iridium (III) Ionic Complexes. ECS Meeting Abstracts, MA2011-01(20), 1282-1282. Lien externe
Bertolazzi, S., Wünsche, J., Cicoira, F., & Santato, C. (2011). Tetracene thin film transistors with polymer gate dielectrics. Applied Physics Letters, 99(1), 3 pages. Lien externe
Camus, A., Choe, S., Bour-Cardinal, C., Isasmendi, J., Cho, Y.-J., Kim, Y., Irimia, C. V., Yumusak, C., Irimia‐Vladu, M., Myung, J., & Santato, C. (2024). Electrical response and biodegradation of Sepia melanin-shellac films printed on paper. Communications Materials, 5, 173 (13 pages). Disponible
Cecchi, T., Gao, Z., & Santato, C. (2024). Flakes and Nanoparticles from Waste Ru-plated Fashion Items through Food Waste By-products. ChemPlusChem, 202400263 (13 pages). Lien externe
Cecchi, T., Gao, Z., Clément, C., Matos-Peralta, Y., Girard, O., & Santato, C. (2023). Recovery of palladium from waste fashion items through food waste by-products. RSC Sustainability, 1(9), 2350-2357. Disponible
Cecchi, T., Gao, Z., Clément, C., Camus, A., Karim, A., Girard, O., & Santato, C. (2023). Recovery of gold from e-waste via food waste byproducts. Nanotechnology, 34(6), 065203 (8 pages). Disponible
Camus, A., Reali, M., & Santato, C. (2022). Advances in high-resolution printed transistors: The case of bio-sourced organic materials. Current Opinion in Green and Sustainable Chemistry, 34, 100594 (14 pages). Lien externe
Camus, A., Reali, M., Rozel, M., Zhuldybina, M., Soavi, F., & Santato, C. (2022). High conductivity Sepia melanin ink films for environmentally benign printed electronics. Proceedings of the National Academy of Sciences, 119(32). Lien externe
Cecchi, T., Pezzella, A., Di Mauro, E., Cestola, S., Ginsburg, D., Luzi, M., Rigucci, A., & Santato, C. (2020). On the antioxidant activity of eumelanin biopigments: a quantitative comparison between free radical scavenging and redox properties. Natural Product Research, 34(17), 2465-2473. Lien externe
Coppede, N., Valitova, I., Mahvash, F., Tarabella, G., Ranzieri, P., Iannotta, S., Santato, C., Martel, R., & Cicoira, F. (2014). Titanyl phthalocyanine ambipolar thin film transistors making use of carbon nanotube electrodes. Nanotechnology, 25(48). Lien externe
Cicoira, F., & Santato, C. (édit.) (2013). Organic Electronics: Emerging Concepts and Technologies. Lien externe
Cicoira, F., Santato, C., Dadvand, A., Harnagea, C., Pignolet, A., Bellutti, P., Xiang, Z., Rosei, F., Meng, H., & Perepichka, D. F. (2008). Environmentally stable light emitting field effect transistors based on 2-(4-pentylstyryl)tetracene. Journal of Materials Chemistry, 18(2), 158-161. Lien externe
Cicoira, F., Santato, C., & Rosei, F. (2008). Two-dimensional nanotemplates as surface cues for the controlled assembly of organic molecules. Dans STM and AFM Studies on (Bio)molecular Systems: Unravelling the Nanoworld (Vol. 285, p. 203-267). Lien externe
Cicoira, F., Santato, C., Melucci, M., Favaretto, L., Gazzano, M., Muccini, M., & Barbarella, G. (2006). Organic light‐emitting transistors based on solution‐cast and vacuum‐sublimed films of a rigid core thiophene oligomer. Advanced Materials, 18(2), 169-174. Lien externe
Cicoira, F., Santato, C., Dinelli, F., Murgia, M., Loi, M. A., Biscarini, F., Zamboni, R., Heremans, P., & Muccini, M. (2005). Morphology and field-effect-transistor mobility in tetracene thin films. Advanced Functional Materials, 15(3), 375-380. Lien externe
Cicoira, F., Santato, C., Melucci, M., Favaretto, L., Gazzano, M., Muccini, M., & Giovanna, B. (octobre 2005). Soluble and thermally stable molecules for organic light-emitting transistors [Communication écrite]. 2005 Joint Fall Meeting of the New England Sections of the APS and AAPT, Burlington, Vermont. Lien externe
da Silva Neres, L. C., Camargo, L. P., Azari, R. K., Garza, J. R. H., Soavi, F., Barbosa, M. S., & Santato, C. (2023). Metal oxide ion-gated transistors: A perspective on in operando characterizations and emerging Li-ion-based applications. MRS Communications, 2023, 9 pages. Lien externe
Di Mauro, E., Rho, D., & Santato, C. (2021). Biodegradation of bio-sourced and synthetic organic electronic materials towards green organic electronics. Nature Communications, 12(1), 10 pages. Disponible
Di Mauro, E., Camaggi, M., Vandooren, N., Bayard, C., De Angelis, J., Pezzella, A., Baloukas, B., Silverwood, R., Ajji, A., Pellerin, C., & Santato, C. (2019). Eumelanin for nature-inspired UV-absorption enhancement of plastics. Polymer International, 68(5), 984-991. Lien externe
Di Mauro, E., Hebrard, E., Boulahia, Y., Rolandi, M., & Santato, C. (2019). On the interfaces between organic bio-sourced materials and metals for sustainable electronics: the eumelanin case. Japanese Journal of Applied Physics, 58(5), 051014 (6 pages). Lien externe
Di Mauro, E., Li, X., Pellerin, C., Cicoira, F., & Santato, C. (2019). Smart Packaging in the Sustainability Challenge: Eumelanin as a UV-absorption Enhancer of Polymers. IEEE Transactions on Nanotechnology, 18, 1160-1165. Lien externe
De Oliveira Silva, G. V., Subramanian, A., Meng, X., Zhang, S., Barbosa, M. S., Baloukas, B., Chartrand, D., Pérez, J. C. G., Orlandi, M. O., Soavi, F., Cicoira, F., & Santato, C. (2019). Tungsten Oxide Ion-Gated Phototransistors using Ionic Liquid and Aqueous Gating Media. Journal of Physics D: Applied Physics, 52(30), 10 pages. Lien externe
Di Mauro, E., Xu, R., Soliveri, G., & Santato, C. (2017). Natural melanin pigments and their interfaces with metal ions and oxides: emerging concepts and technologies. MRS Communications, 7(2), 141-151. Lien externe
Di Mauro, E., Carpentier, O., Yañez Sanchez, S. I., Ignoumba-Ignoumba, N., Lalancette-Jean, M., Zhang, S., Lefebvre, J., Graeff, C. F. O., Cicoira, F., & Santato, C. (2016). Resistive switching controlled by the hydration level in thin films of the biopigment eumelanin. Journal of Materials Chemistry C, 4(40), 9544-9553. Lien externe
d'Ischia, M., Wakamatsu, K., Cicoira, F., Di Mauro, E., Garcia-Borron, J. C., Commo, S., Galván, I., Ghanem, G., Kenzo, K., Meredith, P., Pezzella, A., Santato, C., Sarna, T., Simon, J. D., Zecca, L., Zucca, F. A., Napolitano, A., & Ito, S. (2015). Melanins and melanogenesis: from pigment cells to human health and technological applications. Pigment Cell & Melanoma Research, 28(5), 520-544. Lien externe
De Marchi, F., Cui, D., Lipton-Duffin, J., Santato, C., MacLeod, J. M., & Rosei, F. (2015). Self-assembly of indole-2-carboxylic acid at graphite and gold surfaces. Journal of Chemical Physics, 142(10). Lien externe
Dembele, K. T., Nechache, R., Nikolova, L., Vomiero, A., Santato, C., Licoccia, S., & Rosei, F. (2013). Effect of multi-walled carbon nanotubes on the stability of dye sensitized solar cells. Journal of Power Sources, 233, 93-97. Lien externe
Deronzier, A., Jardon, P., Martre, A., Moutet, J.-C., Santato, C., Balzani, V., Credi, A., Paolucci, F., & Roffia, S. (1998). Photoredox pathways for the polymerization of a pyrrole-substituted ruthenium tris (bipyridyl) complex. New Journal of Chemistry, 22(1), 33-37. Lien externe
Gao, Z., Niyonkuru, D., Yelon, A., & Santato, C. (2023). Effect of structure on semiconducting properties of a small molecule n-type organic semiconductor: Phenyl-C61-butyric acid methyl ester. Journal of Vacuum Science & Technology A: Vacuum, Surfaces and Films, 41(4), 043405 (6 pages). Lien externe
Garza, J. R. H., Camargo, L. P., Azari, R. K., Neres, L. C. S., Khaleel, S., Barbosa, M. S., Soavi, F., & Santato, C. (2023). A study of the doping process in Li⁴Ti⁵O¹² and TiO² battery electrode materials studied in the ion-gated transistor configuration. Journal of Materials Chemistry C, 7 pages. Lien externe
Gouda, A., Masson, A., Hoseinizadeh, M., Soavi, F., & Santato, C. (2022). Biosourced quinones for high-performance environmentally benign electrochemical capacitors via interface engineering. Communications Chemistry, 5(1), 98 (10 pages). Disponible
Gao, Z., Reali, M., Yelon, A., & Santato, C. (2022). Dependence of charge carrier transport on molecular relaxations in glassy poly(3-hexylthiophene-2,5-diyl) (P3HT). Materials Advances, 3(21), 7815-7823. Lien externe
Gouda, A., Manioudakis, J., Naccache, R., Soavi, F., & Santato, C. (2021). 3D Network of Sepia Melanin and N- and, S-Doped Graphitic Carbon Quantum Dots for Sustainable Electrochemical Capacitors. Advanced Sustainable Systems, 5(10), 8 pages. Lien externe
Gouda, A., Liu, T., Byers, J. C., Augustynski, J., & Santato, C. (2021). Best practices in photoelectrochemistry. Journal of Power Sources, 482, 228958 (3 pages). Lien externe
Gouda, A., Masson, A., & Santato, C. (2021). Bio-Inspired Quinone Macromolecules Grafted on O, N, S, P Codoped Carbon Paper for High Energy Density Electrochemical. ECS Meeting Abstracts, MA2021-02(B01), 526-526. Lien externe
Gouda, A., Reali, M., Masson, A., Zvezdin, A., Byway, N., Rho, D., & Santato, C. (2021). Biodegradability and Compostability Aspects of Organic Electronic Materials and Devices. Dans Holuszko, M. E., Kumar, A., & Espinosa, D. C.R. (édit.), Electronic Waste : Recycling and Reprocessing for a Sustainable Future (p. 255-297). Lien externe
Gouda, A., Reali, M., & Santato, C. (2020). Bio-Sourced, Potentially Biodegradable Materials for Fast Response Moisture Sensors. ECS Meeting Abstracts, MA2020-01(IMCS 11 :), 2425-2425. Lien externe
Gao, Z., Yelon, A., & Santato, C. (2020). Charge Carrier Transport in a Polymeric Semiconductor: Poly(3-hexylthiophene-2,5-diyl) (P3HT). ECS Meeting Abstracts, MA2020-01(Z01 : ECS), 2890-2890. Lien externe
Gouda, A., Soavi, F., & Santato, C. (2020). Eumelanin electrodes in buffered aqueous media at different pH values. Electrochimica Acta, 347, 6 pages. Lien externe
Gouda, A., Santato, C., Bobbara, S., & Reali, M. (2019). Light-assisted melanin-based electrochemical energy storage: physicochemical aspects. Journal of Physics D: Applied Physics, 53(4), 043003 (15 pages). Lien externe
Hoseinizadeh, M., Davari, N., Gouda, A., Hyat, H., Sain, M., Boffito, D. C., & Santato, C. (2024). Ultrasound-Assisted Deposition of Sepia Melanin and Multiwalled Carbon Nanotubes on Carbon Cloth: Toward Sustainable Surface Engineering for Flexible Supercapacitors. Advanced Sustainable Systems, 202400302 (11 pages). Lien externe
Hoseinizadeh, M., Salem, K. E., Gouda, A., Belanger, D., & Santato, C. (2023). Tannins for Sustainable Semi-solid-state Supercapacitors. Waste and Biomass Valorization, 14(10), 3475-3488. Lien externe
Işik, D., Santato, C., Barik, S., & Skene, W. G. (2012). Charge-carrier transport in thin films of π conjugated thiopheno-azomethines. Organic Electronics: Materials, Physics, Chemistry and Applications, 13(12), 3022-3031. Lien externe
Isik, D., Shu, Y., Tarabella, G., Coppede, N., Iannotta, S., Lutterotti, L., Cicoira, F., Anthony, J. E., & Santato, C. (2011). Ambipolar organic thin film transistors based on a soluble pentacene derivative. Applied Physics Letters, 99(2). Lien externe
Karimi Azari, R., Gao, Z., Carrière, A., & Santato, C. (2024). Exploring response time and synaptic plasticity in P3HT ion-gated transistors for neuromorphic computing: impact of P3HT molecular weight and film thickness. RSC Applied Interfaces, 9 pages. Lien externe
Kumar, P., Di Mauro, E., Zhang, S., Pezzella, A., Soavi, F., Santato, C., & Cicoira, F. (2016). Melanin-based flexible supercapacitors. Journal of Materials Chemistry C, 4(40), 9516-9525. Lien externe
Kumar, P., Mauro, E. D., Wünsche, J., & Santato, C. (2015). (Invited) Thin Films of Eumelanin Pigment: Charge Carrier Transport, Ion Storage, and Interaction with Metal Electrodes. Meeting abstracts, MA2015-01(18), 1269-1269. Lien externe
Lemieux, J., Belanger, D., & Santato, C. (2021). Toward Biosourced Materials for Electrochemical Energy Storage: The Case of Tannins. ACS Sustainable Chemistry & Engineering, 9(17), 6079-6086. Lien externe
Lan, T., Gao, Z., Barbosa, M. S., & Santato, C. (2020). Flexible Ion-Gated Transistors Making Use of Poly-3-hexylthiophene (P3HT): Effect of the Molecular Weight on the Effectiveness of Gating and Device Performance. Journal of Electronic Materials, 49(9), 5302-5307. Lien externe
Lemieux, J., Masson, A., & Santato, C. (2020). Tannins As Active Material for Energy Storage Applications. ECS Meeting Abstracts, MA2020-01(A01 : Batt), 90-90. Lien externe
Lan, T., Belanger, F., Soavi, F., & Santato, C. (2019). Ambient-stable, ion-gated poly[N-9- heptadecanyl-2,7-carbazole-alt-5,5-(4,7-di-2-thienyl-2,1,3-benzothiadiazole)] (PCDTBT) transistors and phototransistors. Organic Electronics, 74, 265-268. Lien externe
Lan, T., Soavi, F., Marcaccio, M., Brunner, P.-L., Sayago, J., & Santato, C. (2018). Electrolyte-gated transistors based on phenyl-C-61-butyric acid methyl ester (PCBM) films: bridging redox properties, charge carrier transport and device performance. Chemical Communications, 54(43), 5490-5493. Lien externe
Liu, Y., Gorgutsa, S., Santato, C., & Skorobogatiy, M. A. (2012). Flexible, solid electrolyte-based lithium battery composed of LiFePO₄ cathode and Li₄Ti₅O₁₂ anode for applications in smart textiles. Journal of The Electrochemical Society, 159(4), A349-A356. Lien externe
Matos-Peralta, Y., Gao, Z., Dar, A. A., & Santato, C. (2023). Exploiting Melanin-Metal Interactions for Emerging Technologies. Dans Gosset, G. (édit.), Melanins: Functions, Biotechnological Production, and Applications (p. 111-125). Lien externe
Matos-Peralta, Y., Reali, M., Camus, A., Niyonkuru, D., Hosseinsizadeh, M., Gao, Z., & Santato, C. (2023). Nature as the source of materials for more sustainable organic electronics. Material Matters (1), 18-22. Lien externe
Masson, A., Poli, F., Soavi, F., & Santato, C. (2022). Bridging Electronics and Micro Energy Storage. Dans Nanoporous Carbon for Soft and Flexible Energy Devices (Vol. 11, p. 59-84). Lien externe
Meng, X., Quenneville, F., Venne, F., Di Mauro, E., Işık, D., Barbosa, M., Drolet, Y., Natile, M. M., Rochefort, D., Soavi, F., & Santato, C. (2015). Electrolyte-Gated WO₃ Transistors: Electrochemistry, Structure, and Device Performance. Journal of Physical Chemistry C, 119(37), 21732-21738. Lien externe
Meng, X., Quenneville, F., Venne, F., Di Mauro, E., Işık, D., Barbosa, M., Drolet, Y., Natile, M. M., Rochefort, D., Soavi, F., & Santato, C. (2015). Erratum : Electrolyte-Gated WO₃ Transistors: Electrochemistry, Structure, and Device Performance. The Journal of Physical Chemistry C, 119(40), 23292-23292. Lien externe
Miwa, J. A., Cicoira, F., Lipton-Duffin, J., Perepichka, D. F., Santato, C., & Rosei, F. (2008). Self-assembly of rubrene on Cu(111). Nanotechnology, 19(42), 424021-424026. Lien externe
Milita, S., Santato, C., & Cicoira, F. (2006). Structural investigation of thin tetracene films on flexible substrate by synchrotron X-ray diffraction. Applied Surface Science, 252(22), 8022-8027. Lien externe
Milita, S., Servidori, M., Cicoira, F., Santato, C., & Pifferi, A. (2006). Synchrotron X-ray investigation of tetracene thin films grown at different deposition fluxes. Nuclear Instruments & Methods in Physics Research. Section B, Beam Interactions With Materials and Atoms, 246(1), 101-105. Lien externe
Niyonkuru, D., Camus, A., Reali, M., Gao, Z., Shadrack, D. M., Butyaev, O., Surtchev, M., & Santato, C. (2023). A nanoscale study of the structure and electrical response of Sepia eumelanin. Nanoscale Advances, 5(19), 5295-5300. Lien externe
Niyonkuru, D., Carriere, A., Ambrose, R., Gouda, A., Reali, M., Camus, A., Pezzella, A., Hill, I., & Santato, C. (2022). Correction to: Locating the bandgap edges of eumelanin thinfilms for applications in organic electronics (vol 97, pg 837, 2022). Journal of Chemical Technology and Biotechnology, 97(7), 1910-1910. Lien externe
Niyonkuru, D., Carriere, A., Ambrose, R., Gouda, A., Reali, M., Camus, A., Pezzella, A., Hill, I., & Santato, C. (2022). Locating the bandgap edges of eumelanin thin films for applications in organic green electronic. Journal of Chemical Technology and Biotechnology, 97(4), 837-843. Lien externe
Poli, F., Herrera, J. R., Lan, T., Kumar, P., Santato, C., & Soavi, F. (2023). Electronic properties of lithium-ion battery cathodes studied in ion-gated transistor configuration. iScience, 26(1), 105888 (12 pages). Lien externe
Poli, F., Lan, T., Herrera, J. R., Santato, C., Cicoira, F., & Soavi, F. (2020). Transbattery, a Novel Class of Device to Study Electronic Properties of Nanostructured Materials for Energetics. ECS Meeting Abstracts, MA2020-01(A02 : Lith), 325-325. Lien externe
Poli, F., Spina, G., Terella, A., Mashkour, M., Focarete, M. L., Fabiani, D., Santato, C., Momodu, D., Manyala, N., & Soavi, F. (2019). (Invited) Green Materials for Sustainable Supercapacitors. ECS Meeting Abstracts, MA2019-04(5), 290-290. Lien externe
Reali, M., Saini, P., & Santato, C. (2021). Electronic and protonic transport in bio-sourced materials: a new perspective on semiconductivity. Materials Advances, 2(1), 15-31. Disponible
Reali, M., Camus, A., Beaulieu, G., De Angelis, J., Pellerin, C., Pezzella, A., & Santato, C. (2021). Eumelanin: From Molecular State to Film. Journal of Physical Chemistry C, 125(6), 3567-3576. Lien externe
Reali, M., Gouda, A., Bellemare, J., Ménard, D., Nunzi, J.-M., Soavi, F., & Santato, C. (2020). Electronic Transport in the Biopigment Sepia Melanin. ACS Applied Bio Materials, 3(8), 5244-5252. Lien externe
Santato, C. (2022). (Invited) Organic Electronics: Degradation of Eumelanin Studied by Fluorescence Spectroscopy. Meeting abstracts, MA2022-01(20), 1098-1098. Lien externe
Subramanian, A., Azimi, M., Leong, C. L., Lee, S. L., Santato, C., & Cicoira, F. (2022). Solution-Processed Titanium Dioxide Ion-Gated Transistors and Their Application for pH Sensing. Frontiers in Electronics, 3, 813535 (9 pages). Disponible
Subramanian, A., Azimi, M., Santato, C., & Cicoira, F. (2022). Combining Aqueous Solution Processing and Printing for Fabrication of Flexible and Sustainable Tin Dioxide Ion-Gated Transistors. Advanced Materials Technologies, 7(2), 2100843 (7 pages). Lien externe
Santato, C., & Alarco, P.-J. (2022). The Global Challenge of Electronics: Managing the Present and Preparing the Future. Advanced Materials Technologies, 7(2), 2101265 (6 pages). Lien externe
Santato, C., Vladu, M. I., Holuszko, M., & Yin, L. (2022). Green Electronics. Advanced Sustainable Systems, 6(2), 2 pages. Lien externe
Santato, C., Irimia Vladu, M., Holuszko, M., & Yin, L. (2022). Special Issue of Advanced Materials Technologies on Green Electronics. Advanced Materials Technologies, 7(2), 3 pages. Lien externe
Santato, C. (2020). (Invited) Biodegradable Light-Emitting Organic Materials. Meeting abstracts, MA2020-01(16), 1098-1098. Lien externe
Subramanian, A., George, B., Bobbara, S. R., Valitova, I., Ruggeri, I., Borghi, F., Podesta, A., Milani, P., Soavi, F., Santato, C., & Cicoira, F. (2020). Ion-gated transistors based on porous and compact TiO₂ films: Effect of Li ions in the gating medium. AIP Advances, 10(6), 7 pages. Lien externe
Saini, P., & Santato, C. (2020). Melanin-Based Thin Films for Sustainable Electronic Devices. ECS Meeting Abstracts, MA2020-01(25), 1410-1410. Lien externe
Soavi, F., & Santato, C. (décembre 2017). Monolithically integrated supercapacitors and electrolyte-gated transistors [Communication écrite]. 24th International Display Workshops (IDW 2017), Sendai, Japan. Non disponible
Sayago, J., Patel, M., Cicoira, F., Soavi, F., & Santato, C. (2015). (Invited) Ionic Liquid-Gated PCBM Transistors: Pushing the Limit of the Doping in Organic Transistors. Meeting abstracts, MA2015-01(18), 1277-1277. Lien externe
Soavi, F., Sayago, J., Cicoira, F., & Santato, C. (2015). Transcap: A New Integrated Hybrid Supercapacitor and Electrolyte-Gated Transistor Device. Meeting abstracts, MA2015-01(1), 114-114. Lien externe
Sayago, J., Xiang, M., Quenneville, F., Liang, S., Bourbeau, É., Soavi, F., Cicoira, F., & Santato, C. (2015). Electrolyte-gated polymer thin film transistors making use of ionic liquids and ionic liquid-solvent mixtures. Journal of Applied Physics, 117(11), 6 pages. Lien externe
Santato, C. (août 2015). Transcap: A new integrated hybrid supercapacitor and electrolyte-gated transistor device [Présentation]. Dans Organic Field-Effect Transistors XIV and Organic Sensors and Bioelectronics VIII, San Diego, California. Lien externe
Shafique, U., Santato, C., & Karim, K. S. (2014). Lateral organic semiconductor photodetector. Part I: Use of an insulating layer for low dark current. IEEE Transactions on Electron Devices, 61(10), 3465-3471. Lien externe
Sayago, J., Soavi, F., Sivalingam, Y., Cicoira, F., & Santato, C. (2014). Low voltage electrolyte-gated organic transistors making use of high surface area activated carbon gate electrodes. Journal of Materials Chemistry C, 2(28), 5690-5694. Lien externe
Soavi, F., Sayago, J., Cicoira, F., & Santato, C. (2014). Sub-1 V Electrolyte-Gated Polymer Transistors with Ionic Liquid Electrolyte and High-Surface Area Carbon Gate Electrode. ECS Meeting Abstracts, MA2014-01(23), 1026-1026. Lien externe
Sayago, J., Shafique, U., Soavi, F., Cicoira, F., & Santato, C. (2014). TransCap: A monolithically integrated supercapacitor and electrolyte-gated transistor. Journal of Materials Chemistry C, 2(48), 10273-10276. Lien externe
Santato, C., Pison, J., Isik, D., Sivalingam, Y., & Sayago, J. (2013). (Invited) A Study of Interfacial Processes Between Metal Oxide Nanostructured Thin Films and Ionic Liquids For Potential Applications In Photoelectrochemistry. Meeting abstracts, MA2013-02(44), 2574-2574. Lien externe
Sayago, J., Bayatpour, S., Cicoira, F., & Santato, C. (2013). Toward electrolyte-gated organic light-emitting transistors : advances and challenges. Dans Organic electronics : emerging concepts and technologies (p. 215-232). Lien externe
Sayago, J., Rosei, F., & Santato, C. (2012). Organic photonics : Blending organic building blocks. Nature Photonics, 6(10), 639-640. Lien externe
Santato, C., Cicoira, F., & Martel, R. (2011). Organic photonics : Spotlight on organic transistors. Nature Photonics, 5(7), 392-393. Lien externe
Santato, C., Favaretto, L., Melucci, M., Zanelli, A., Gazzano, M., Monari, M., Isik, D., Banville, D., Bertolazzi, S., Loranger, S., & Cicoira, F. (2010). Influence of the oxidation level on the electronic, morphological and charge transport properties of novel dithienothiophene S-oxide and S,S-dioxide inner core oligomers. Journal of Materials Chemistry, 20(4), 669-676. Lien externe
Santato, C., & Rosei, F. (2010). Organic/metal interfaces: Seeing both sides. Nature Chemistry, 2(5), 344-345. Lien externe
Santato, C., Loranger, S., Banville, D., Federico, R., & Dmiytro, P. (mars 2009). Harvesting lost photons: Minimizing sub-bandgap losses in organic photovoltaic devices by up-conversion [Résumé]. American Physical Society March Meeting, Baltimore, Maryland. Non disponible
Santato, C., Cicoira, F., & Rosei, F. (2009). Self‐assembly of thiophene‐based materials: A scanning tunneling microscopy perspective. Dans Handbook of Thiophene-Based Materials: Applications in Organic Electronics and Photonics (p. 517-547). Lien externe
Santato, C., Lopez, C. M., & Choi, K. S. (2007). Synthesis and characterization of polycrystalline Sn and SnO₂ films with wire morphologies. Electrochemistry Communications, 9(7), 1519-1524. Lien externe
Santato, C., Cicoira, F., Cosseddu, P., Bonfiglio, A., Bellutti, P., Muccini, M., Zamboni, R., Rosei, F., Mantoux, A., & Doppelt, P. (2006). Organic light-emitting transistors using concentric source/drain electrodes on a molecular adhesion layer. Applied Physics Letters, 88(16). Lien externe
Solarska, R., Santato, C., Jorand-Sartoretti, C., Ulmann, M., & Augustynski, J. (2005). Photoelectrolytic oxidation of organic species at mesoporous tungsten trioxide film electrodes under visible light illumination. Journal of Applied Electrochemistry, 35(7-8), 715-721. Lien externe
Santato, C., Manunza, I., Bonfiglio, A., Cicoira, F., Cosseddu, P., Zamboni, R., & Muccini, M. (2005). Tetracene light-emitting transistors on flexible plastic substrates. Applied Physics Letters, 86(14), 1-3. Lien externe
Santato, C., Mattei, G., Ruihua, W., & Mecarini, F. (2004). In situ micro Raman investigation of the laser crystallization in Si thin films plasma enhanced chemical vapor deposition-grown from He-diluted SiH4. Journal of Applied Physics, 95(10), 5366-5372. Lien externe
Santato, C., Capelli, R., Loi, M. A., Murgia, M., Cicoira, F., Roy, V. A. L., Stallinga, P., Zamboni, R., Rost, C., Karg, S. F., & Muccini, M. (2004). Tetracene-based organic light-emitting transistors: optoelectronic properties and electron injection mechanism. Synthetic Metals, 146(3), 329-334. Lien externe
Santato, C., Odziemkowski, M., Ulmann, M., & Augustynski, J. (2001). Crystallographically oriented mesoporous WO3 films: synthesis, characterization, and applications. Journal of the American Chemical Society, 123(43), 10639-10649. Lien externe
Santato, C., Ulmann, M., & Augustynski, J. (2001). Enhanced visible light conversion efficiency using nanocrystalline WO3 films. Advanced Materials, 13(7), 511-514. Lien externe
Santato, C., Ulmann, M., & Augustynski, J. (2001). Photoelectrochemical properties of nanostructured tungsten trioxide films. Journal of Physical Chemistry B, 105(5), 936-940. Lien externe
Tang, H., Kumar, P., Zhang, S., Santato, C., Soavi, F., & Cicoira, F. (2015). Conducting Polymer Transistors Making Use of Activated Carbon Gate Electrodes. Meeting abstracts, MA2015-01(18), 1280-1280. Lien externe
Tang, H., Kumar, P., Zhang, S., Yi, Z., De Crescenzo, G., Santato, C., Soavi, F., & Cicoira, F. (2015). Conducting polymer transistors making use of activated carbon gate electrodes. ACS Applied Materials & Interfaces, 7(1), 969-973. Lien externe
Tarabella, G., Mahvash Mohammadi, F., Coppede, N., Barbero, F., Iannotta, S., Santato, C., & Cicoira, F. (2013). New opportunities for organic electronics and bioelectronics: Ions in action. Chemical Science, 4(4), 1395-1409. Lien externe
Tarabella, G., Coppedè, N., Iannotta, S., Cicoira, F., Kumar, P., & Santato, C. (2013). Organic bioelectronics. Dans Handbook of Organic Materials for Optical and (Opto)Electronic Devices: Properties and Applications (p. 597-617). Lien externe
Tarabella, G., Nanda, G., Villani, M., Coppede, N., Mosca, R., Malliaras, G. G., Santato, C., Iannotta, S., & Cicoira, F. (2012). Organic electrochemical transistors monitoring micelle formation. Chemical Science, 3(12), 3432-3435. Lien externe
Tarabella, G., Santato, C., Yoon Yang, S., Iannotta, S., Malliaras, G. G., & Cicoira, F. (2010). Effect of the gate electrode on the response of organic electrochemical transistors. Applied Physics Letters, 97(12). Lien externe
Visentin, F., Cantin, J., & Santato, C. (2024). Active and Dynamic Learning in Sustainable Electronics. Journal of Chemical Education, 4c00096 (7 pages). Lien externe
Valitova, I., Natile, M. M., Soavi, F., Santato, C., & Cicoira, F. (2017). Tin Dioxide Electrolyte-Gated Transistors Working in Depletion and Enhancement Modes. ACS Applied Materials & Interfaces, 9(42), 37013-37021. Lien externe
Valitova, I., Kumar, P., Meng, X., Soavi, F., Santato, C., & Cicoira, F. (2016). Photolithographically patterned TiO₂ films for electrolyte-gated transistors. ACS Applied Materials & Interfaces, 8(23), 14855-14862. Lien externe
Venne, F., Quintanilla, M., Quenneville, F., Işik, D., Baloukas, B., Vetrone, F., & Santato, C. (2015). Towards near-infrared photosensitization of tungsten trioxide nanostructured films by upconverting nanoparticles. RSC Advances, 5(100), 81875-81880. Lien externe
Valitova, I., Amato, M., Mahvash, F., Cantele, G., Maffucci, A., Santato, C., Martel, R., & Cicoira, F. (2013). Carbon nanotube electrodes in organic transistors. Nanoscale, 5(11), 4638-4646. Lien externe
Wünsche, J., Deng, Y., Kumar, P., Di Mauro, E., Josberger, E., Sayago, J., Pezzella, A., Soavi, F., Cicoira, F., Rolandi, M., & Santato, C. (2015). Protonic and electronic transport in hydrated thin films of the pigment eumelanin. Chemistry of Materials, 27(2), 436-442. Lien externe
Wünsche, J., Tarabella, G., Bertolazzi, S., Bocoum, M., Coppede, N., Barba, L., Arrighetti, G., Lutterotti, L., Iannotta, S., Cicoira, F., & Santato, C. (2013). The correlation between gate dielectric, film growth, and charge transport in organic thin film transistors: The case of vacuum-sublimed tetracene thin films. Journal of Materials Chemistry C, 1(5), 967-976. Lien externe
Wünsche, J., Cicoira, F., Graeff, C. F. O., & Santato, C. (2013). Eumelanin thin films: Solution-processing, growth, and charge transport properties. Journal of Materials Chemistry B, 1(31), 3836-3842. Lien externe
Wünsche, J., Cardenas, L., Rosei, F., Cicoira, F., Gauvin, R., Graeff, C. F. O., Poulin, S., Pezzella, A., & Santato, C. (2013). In Situ formation of dendrites in eumelanin thin films between gold electrodes. Advanced Functional Materials, 23(45), 5591-5598. Lien externe
Wünsche, J., Rosei, F., Graeff, C. F. O., & Santato, C. (2011). Growth and Morphology of Eumelanin Thin Films - A Future Bioelectronic Material. Meeting abstracts, MA2011-01(17), 1171-1171. Lien externe
Wünsche, J., Rosei, F., Graeff, C. F. O., & Santato, C. (mai 2011). Growth and morphology of eumelanin thin films - A future bioelectronic material? [Communication écrite]. Bioelectronics, Biointerfaces, and Biomedical Applications 4 - 219th ECS Meeting, Montréal, Québec. Lien externe
Xu, R., Gouda, A., Caso, M. F., Soavi, F., & Santato, C. (2020). Light-enhanced Electrochemical Energy Storage of Synthetic Melanin on Conductive Glass Substrates. MRS Advances, 5(27-28), 1441-1448. Lien externe
Xu, R., Soavi, F., & Santato, C. (2019). An electrochemical study on the effect of metal chelation and reactive oxygen species on a synthetic neuromelanin model. Frontiers in Bioengineering and Biotechnology, 7, 227 (11 pages). Disponible
Xu, R., Gouda, A., Caso, M. F., Soavi, F., & Santato, C. (2019). Melanin: A Greener Route To Enhance Energy Storage under Solar Light. ACS Omega, 4(7), 12244-12251. Lien externe
Xu, R., Prontera, C. T., Di Mauro, E., Pezzella, A., Soavi, F., & Santato, C. (2017). An electrochemical study of natural and chemically controlled eumelanin. APL Materials, 5(12), 126108 (8 pages). Disponible
Yi, Z., Natale, G., Kumar, P., Di Mauro, E., Heuzey, M.-C., Soavi, F., Perepichka, I. I., Varshney, S. K., Santato, C., & Cicoira, F. (2015). Ionic liquid-water mixtures and ion gels as electrolytes for organic electrochemical transistors. Journal of Materials Chemistry C, 3(25), 6549-6553. Lien externe
Zvezdin, A., Di Mauro, E., Rho, D., Santato, C., & Khalil, M. (2020). En route toward sustainable organic electronics. MRS Energy and Sustainability - A Review Journal, 7(1), E16 (8 pages). Lien externe