Publications

Export 7 results:
Sort by: Author Title Type [ Year  (Desc)]
2024
Alexandre, M., I. M. Santos, R. Martins, and MJ Mendes. "SCATMM: Easy-to-Use Graphical User Interface for Light Propagation in Arbitrary Multilayers." Journal of Open Research Software. 12 (2024). AbstractWebsite
n/a
S. Fernandes, I., D. Antunes, R. Martins, MJ Mendes, and A. S. Reis-Machado. "Solar fuels design: Porous cathodes modeling for electrochemical carbon dioxide reduction in aqueous electrolytes." Heliyon. 10 (2024). AbstractWebsite
n/a
Marques, N., S. Jana, MJ Mendes, H. Águas, R. Martins, and S. Panigrahi. "Surface modification of halide perovskite using EDTA-complexed SnO2 as electron transport layer in high performance solar cells." RSC Advances. 14 (2024): 12397-12406. AbstractWebsite
n/a
2023
Ribeiro, G., G. Ferreira, U. D. Menda, M. Alexandre, M. J. Brites, M. A. Barreiros, S. Jana, H. Águas, R. Martins, P. A. Fernandes, P. Salomé, and MJ Mendes. "Sub-Bandgap Sensitization of Perovskite Semiconductors via Colloidal Quantum Dots Incorporation." Nanomaterials. 13 (2023). AbstractWebsite
n/a
2021
Boane, Jenny L. N., Pedro Centeno, Ana Mouquinho, Miguel Alexandre, Tomás Calmeiro, Elvira Fortunato, Rodrigo Martins, Manuel J. Mendes, and Hugo Águas. "Soft-Microstructured Transparent Electrodes for Photonic-Enhanced Flexible Solar Cells." Micro. 1 (2021): 215-227. AbstractWebsite

Microstructured transparent conductive oxides (TCOs) have shown great potential as photonic electrodes in photovoltaic (PV) applications, providing both optical and electrical improvements in the solar cells’ performance due to: (1) strong light trapping effects that enhance broadband light absorption in PV material and (2) the reduced sheet resistance of the front illuminated contact. This work developed a method for the fabrication and optimization of wavelength-sized indium zinc oxide (IZO) microstructures, which were soft-patterned on flexible indium tin oxide (ITO)-coated poly(ethylene terephthalate) (PET) substrates via a simple, low-cost, versatile, and highly scalable colloidal lithography process. Using this method, the ITO-coated PET substrates patterned with IZO micro-meshes provided improved transparent electrodes endowed with strong light interaction effects—namely, a pronounced light scattering performance (diffuse transmittance up to  50%). In addition, the photonic-structured IZO mesh allowed a higher volume of TCO material in the electrode while maintaining the desired transparency, which led to a sheet resistance reduction (by  30%), thereby providing further electrical benefits due to the improvement of the contact conductance. The results reported herein pave the way for a new class of photonic transparent electrodes endowed with mechanical flexibility that offer strong potential not only as advanced front contacts for thin-film bendable solar cells but also for a much broader range of optoelectronic applications.

2020
Centeno, P., M. F. Alexandre, M. Chapa, JV Pinto, J. Deuermeier, T. Mateus, E. Fortunato, R. Martins, H. Águas, and MJ Mendes. "Self-Cleaned Photonic-Enhanced Solar Cells with Nanostructured Parylene-C." Advanced Materials Interfaces. 7 (2020). AbstractWebsite
n/a