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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. External link
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. External link
Guo, R., Zhang, S., Yue, S., Yan, P., Wu, Y., Qu, D., & Zhao, Y. (2016). High efficiency and simplified white organic light-emitting diode based on a single-host emission layer. Synthetic Metals, 220, 329-333. External link
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. External link
Kumar, P., Yi, Z., Zhang, S., Sekar, A., Soavi, F., & Cicoira, F. (2015). Effect of channel thickness, electrolyte ions, and dissolved oxygen on the performance of organic electrochemical transistors. Applied Physics Letters, 107(5). External link
Li, Y., Zhang, S., Li, X., Unnava, V. R. N., & Cicoira, F. (2020). Highly Stretchable PEDOT:PSS Organic Electrochemical Transistors Achieved Via Polyethylene Glycol Addition. Meeting abstracts, MA2020-01(52), 2913-2913. External link
Li, Y., Li, X., Zhang, S., Liu, L., Hamad, N., Bobbara, S. R., Pasini, D., & Cicoira, F. (2020). Autonomic Self-Healing of PEDOT:PSS Achieved Via Polyethylene Glycol Addition. Advanced Functional Materials, 30(30), 2002853 (9 pages). External link
Li, Y., Zhang, S., Hamad, N., Kim, K., Liu, L., Lerond, M., & Cicoira, F. (2020). Tailoring the Self-Healing Properties of Conducting Polymer Films. Macromolecular Bioscience, 20(11), 2000146 (8 pages). External link
Li, Y., Zhang, S., Li, X., Unnava, V. R. N., & Cicoira, F. (2019). Highly stretchable PEDOT:PSS organic electrochemical transistors achieved via polyethylene glycol addition. Flexible and Printed Electronics, 4(4), 9 pages. External link
Mu, Y., Zhang, S., Yue, S. Z., Wu, Q. Y., & Zhao, Y. (2015). High efficiency yellow organic light-emitting diodes with optimized barrier layers. Solid-State Electronics, 114, 87-89. External link
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. External link
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. External link
Wu, Q., Zhang, S., Yue, S., Zhang, Z., Xie, G., Zhao, Y., & Liu, S. (2013). Enhanced efficiency in single-host white organic light-emitting diode by triplet exciton conversion. Journal of Luminescence, 143, 108-112. External link
Wang, X., Zhang, S., Liu, Z., Yue, S., Zhang, Z., Chen, Y., Xie, G., Xue, Q., Zhao, Y., & Liu, S. (2013). Hybrid white organic light-emitting diodes with improved color stability and negligible efficiency roll-off based on blue fluorescence and yellow phosphorescence. Journal of Luminescence, 137, 59-63. External link
Yan, P., Liu, Z., Zhang, S., Liu, D., Wang, X., Yue, S., & Zhao, Y. (2014). Observation of hole injection boost via two parallel paths in Pentacene thin-film transistors by employing Pentacene: 4, 4"-tris(3-methylphenylphenylamino) triphenylamine: MoO₃ buffer layer. APL Materials, 2(11), 116103 (7 pages). Available
Zhang, S., Ling, H., Chen, Y., Cui, Q., Ni, J., Wang, X., Hartel, M. C., Men, X., Lee, K.J., Lee, J., Sun, W., Lin, H., Emaminejad, S., Ahadian, S., Ashammakhi, N., Dokmeci, M. R., & Khademhosseini, A. (2020). Hydrogel-Enabled Transfer-Printing of Conducting Polymer Films for Soft Organic Bioelectronics. Advanced Functional Materials, 30(6), 8 pages. External link
Zhang, S., Chen, Y., Liu, H., Wang, Z., Ling, H., Wang, C., Ni, J., Saltik, B. C., Wang, X., Meng, X., Kim, H.-J., Baidya, A., Ahadian, S., Ashammakhi, N., Dokmeci, M. R., Travas-Sejdic, J., & Khademhosseini, A. (2019). Room-Temperature-Formed PEDOT:PSS Hydrogels Enable Injectable, Soft, and Healable Organic Bioelectronics. Advanced Materials, 32(1), e1904752 (7 pages). External link
Zhang, S., Li, Y., Tomasello, G., Anthonisen, M., Li, X., Mazzeo, M., Genco, A., Grutter, P., & Cicoira, F. (2019). Tuning the Electromechanical Properties of PEDOT:PSS Films for Stretchable Transistors And Pressure Sensors. Advanced Electronic Materials, 5(6), 1900191 (7 pages). External link
Zhang, S., & Cicoira, F. (2018). Flexible self-powered biosensors. Nature, 561(7724), 466-467. External link
Zhang, S. (2017). Processing and Patterning of Conducting Polymer Films for Flexible, Stretchable and Healable Electronics [Ph.D. thesis, École Polytechnique de Montréal]. Available
Zhang, S., Hubis, E., Tomasello, G., Soliveri, G., Kumar, P., & Cicoira, F. (2017). Patterning of Stretchable Organic Electrochemical Transistors. Chemistry of Materials, 29(7), 3126-3132. External link
Zhang, S., & Cicoira, F. (2017). Water-Enabled Healing of Conducting Polymer Films. Advanced Materials, 29(40), 6 pages. External link
Zhang, S., Hubis, E., Girard, C., Kumar, P., DeFranco, J., & Cicoira, F. (2016). Water stability and orthogonal patterning of flexible micro-electrochemical transistors on plastic. Journal of Materials Chemistry C, 4(7), 1382-1385. External link
Zhang, S., Kumar, P., Nouas, A. S., Fontaine, L., Tang, H., & Cicoira, F. (2015). Solvent-induced changes in PEDOT:PSS films for organic electrochemical transistors. APL Materials, 3(1), 014911 (7 pages). Available
Zhang, S., Yue, S., Wu, Q., Zhang, Z., Chen, Y., Wang, X., Liu, Z., Xie, G., Xue, Q., Qu, D., Zhao, Y., & Liu, S. (2013). Color stable multilayer all-phosphor white organic light-emitting diodes with excellent color quality. Organic Electronics: physics, materials, applications, 14(8), 2014-2022. External link
Zhang, S., Liu, Z., Wang, X., Yue, S., Zhang, Z., Wu, Q., Xie, G., Xue, Q., Chen, Y., Wang, P., Guo, R., Qu, D., Zhao, Y., & Liu, S. (2013). White organic light-emitting diodes based on a yellow phosphorescence iridium complex and a high-efficiency blue fluorescence. Thin Solid Films, 537, 221-225. External link